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" #rie $Ti % &tic ' (ula ) *ula +Bo , -ula .It / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K LrFi M0F> N O P QP R S T) UH V W X Y Z [ \ ] ^ _ ` abcdefghiFoje  kFoo l m* n op q rstu v\wxyz{TO|He}F~ 2 !"#$fe%ee&'()*H+F,-H.F/0H1F23H4F56H7Fr8mat9:;=-<=>men?@ArieBTiC DticEFulaGHulaIBoJKulaLItMN 1 newlink HRS_SCI6 7gotolink Defs.book:SIMPLE_def; !<gotolink Defs.book:BITPIX_def@ "Agotolink Defs.book:DATATYPE_def #gotolink Defs.book:NAXIS_def $gotolink Defs.book:NAXIS1_def %gotolink Defs.book:GROUPS_def) &Hgotolink Defs.book:GCOUNT_def 'gotolink Defs.book:PCOUNT_def (gotolink Defs.book:CRVALi_def )gotolink Defs.book:CRPIXi_def *Fogotolink Defs.book:CDi_j_def* +gotolink Defs.book:DATAMIN_def ,gotolink Defs.book:DATAMAX_def -gotolink Defs.book:RA_APER_def .Fgotolink Defs.book:DEC_APER_def  /!gotolink Defs.book:FILLCNT_def 0&gotolink Defs.book:ERRCNT_def 1+gotolink Defs.book:PKTTIME_def 20gotolink Defs.book:CTYPEi_def 35gotolink Defs.book:OBSRPT_def 4:gotolink Defs.book:OBSINT_def 5?gotolink Defs.book:YDEF_defC 6Dgotolink Defs.book:XDEF_defH 7Igotolink Defs.book:SAMPLE_def 8Ngotolink Defs.book:DELTAS_defe 9 HRgotolink Defs.book:LINE_deffs. :SIMgotolink Defs.book:EXPOSURE_defook ;IX_gotolink Defs.book:BINID_defok <TYPgotolink Defs.book:CARPOS_def. =NAXgotolink Defs.book:ZSCOEF1_def >NAXgotolink Defs.book:ZSCOEF2_def ?GROgotolink Defs.book:ZSCOEF3_def @GCOgotolink Defs.book:ZSCOEF4_def APCOgotolink Defs.book:INSTRUME_defook BLi_gotolink Defs.book:ROOTNAME_defCRP Cefgotolink Defs.book:FILETYPE_defj_d D +gotolink Defs.book:BUNIT_defIN E ,gotolink Defs.book:NBINS_defAX F -gotolink Defs.book:NINIT_defER G .gotolink Defs.book:RPTOBS_defE H gotolink Defs.book:INTOBS_defL Idefgotolink Defs.book:BINIDi_defR Jefgotolink Defs.book:BINIDi_defT Kdefgotolink Defs.book:BINIDi_defY Lefgotolink Defs.book:BINIDi_defS Mefgotolink Defs.book:BINIDi_defS Nefgotolink Defs.book:BINIDi_defE OCgotolink Defs.book:BINIDi_defE PHgotolink Defs.book:IXDEFi_defM Qefgotolink Defs.book:IXDEFi_defL Refegotolink Defs.book:IXDEFi_defN Sfs.gotolink Defs.book:IXDEFi_defP T_degotolink Defs.book:IXDEFi_defk UD_dgotolink Defs.book:IYDEFi_defk VOS_gotolink Defs.book:IYDEFi_defk WEF1gotolink Defs.book:IYDEFi_defk XEF2gotolink Defs.book:IYDEFi_defk YEF3gotolink Defs.book:IYDEFi_defk ZEF4gotolink Defs.book:HOFFi_defok [RUMgotolink Defs.book:HOFFi_defs. \ROOgotolink Defs.book:HOFFi_def D ]ookgotolink Defs.book:HOFFi_defli ^fs.gotolink Defs.book:HOFFi_defli _fs.gotolink Defs.book:HOFFi_defli `fs.gotolink Defs.book:VOFF1_defli afs.gotolink Defs.book:VOFF2_defli bfs.gotolink Defs.book:VOFF3_defli cfs.gotolink Defs.book:VOFF4_defli dfs.gotolink Defs.book:VOFF5_defli efs.gotolink Defs.book:VOFF6_defli ffs.gotolink Defs.book:RPTCDi_defi gfs.gotolink Defs.book:RPTCDi_defi hfs.gotolink Defs.book:RPTCDi_defi ifs.gotolink Defs.book:RPTCDi_defi jfs.gotolink Defs.book:RPTCDi_defi kfs.gotolink Defs.book:RPTCDi_defi lfs.gotolink Defs.book:ZXDCALU_def mfs.gotolink Defs.book:ZXDCALP_def nfs.gotolink Defs.book:ZYDCALU_def ofs.gotolink Defs.book:ZYDCALP_def pfs.gotolink Defs.book:INFOB_defli qfs.gotolink Defs.book:INFOC_defli rfs.gotolink Defs.book:SCIDMP_defi sfs.gotolink Defs.book:MAXGSS_defi tfs.gotolink Defs.book:MERGED_defi ufs.gotolink Defs.book:STEPPATT_defk D vookgotolink Defs.book:STEPTIME_deffs. wHOFgotolink Defs.book:FP_SPLIT_defook xi_dgotolink Defs.book:COMB_ADD_defHOF yfligotolink Defs.book:FINCODE_def zfligotolink Defs.book:DOPPLER_def {fligotolink Defs.book:METER_defOF |fligotolink Defs.book:OBSMODE_def }fligotolink Defs.book:DETECTOR_def5_d ~ egotolink Defs.book:GRATING_def  fgotolink Defs.book:APERTURE_defefi fs.gotolink Defs.book:DIOHFILE_def h gogotolink Defs.book:PHCHFILE_deffs. oligotolink Defs.book:VIGHFILE_defgo k Dgotolink Defs.book:ABSHFILE_defoli fs.gotolink Defs.book:NETHFILE_defk D ookgotolink Defs.book:DQIHFILE_deffs. ZXDgotolink Defs.book:CCR1_deffs. ZYDgotolink Defs.book:CCR2_deffs. ZYDgotolink Defs.book:CCR3_deffs. INFgotolink Defs.book:CCR4_deffs. INFgotolink Defs.book:CCR5_deffs. SCIgotolink Defs.book:CCR6_deffs. MAXgotolink Defs.book:CCR7_deffs. MERgotolink Defs.book:CCR8_deffs. STEgotolink Defs.book:CCR9_defk D ookgotolink Defs.book:CCRA_defoli fs.gotolink Defs.book:CCRB_defgo k Dgotolink Defs.book:CCG2_deffli oligotolink Defs.book:DQI_CORR_defgo k Dgotolink Defs.book:EXP_CORR_defoli fs.gotolink Defs.book:DIO_CORR_defk D ookgotolink Defs.book:PPC_CORR_deffs. DETgotolink Defs.book:MAP_CORR_deffs. GRAgotolink Defs.book:DOP_CORR_defook TURgotolink Defs.book:PHC_CORR_defook FILgotolink Defs.book:VIG_CORR_defook FILgotolink Defs.book:MER_CORR_defook FILgotolink Defs.book:MDF_CORR_defook FILgotolink Defs.book:MNF_CORR_defook FILgotolink Defs.book:PLY_CORR_defook FILgotolink Defs.book:BCK_CORR_defook  _degotolink Defs.book:ADC_CORR_defCCR  fs.gotolink Defs.book:IAC_CORR_def_de  gotolink Defs.book:ECH_CORR_deffs.  INFgotolink Defs.book:FLX_CORR_def  gogotolink Defs.book:HEL_CORR_defMAX  oligotolink Defs.book:VAC_CORR_defgo  k Dgotolink Defs.book:DOPZER_defo  k Dgotolink Defs.book:DOPMAG_defo k Dgotolink Defs.book:SCLAMP_defo k Dgotolink Defs.book:ZLCOEF1_def k Dgotolink Defs.book:ZLCOEF2_def k Dgotolink Defs.book:SPORDER_def oligotolink Defs.book:MINWAVE_def  gogotolink Defs.book:MAXWAVE_def  ookgotolink Defs.book:DATE_def_de   gotolink Defs.book:PODPSFF_def  fs.gotolink Defs.book:STDCFFF_def  _degotolink Defs.book:STDCFFP_def  CORgotolink Defs.book:PKTFMT_def.  VIGgotolink Defs.book:ZFSPYBF_def  ookgotolink Defs.book:ZFXMAPC_def  fs.gotolink Defs.book:ZFYMAPC_def  k Dgotolink Defs.book:ZDEBTF_defL  oligotolink Defs.book:ZDEBTR_def  gogotolink Defs.book:ZDETT1_defk  _degotolink Defs.book:ZDETT2_defe   gotolink Defs.book:ZDRT_defCOR  _degotolink Defs.book:ZDT11_defCH  _degotolink Defs.book:ZDT12_defok  CORgotolink Defs.book:ZET11_defs.  HELgotolink Defs.book:ZET31_def D ookgotolink Defs.book:ZFIAT_defli ! fs.gotolink Defs.book:ZFIBT_defli " fs.gotolink Defs.book:ZFICT_defli # fs.gotolink Defs.book:ZHDC1_defli $ fs.gotolink Defs.book:ZHDC2_defli % fs.gotolink Defs.book:ZHVPST1_def & fs.gotolink Defs.book:ZHVPST2_def ' fs.gotolink Defs.book:ZMEBT1_defi ( fs.gotolink Defs.book:ZMEBT2_defi ) fs.gotolink Defs.book:ZOBBT_defli * fs.gotolink Defs.book:ZOBT11_defi + fs.gotolink Defs.book:ZPABT1_defi , fs.gotolink Defs.book:ZPABT2_defi - fs.gotolink Defs.book:ZPCC1_defli . fs.gotolink Defs.book:ZPCC2_defli / fs.gotolink Defs.book:ZPCV1_defli 0 fs.gotolink Defs.book:ZPCV2_defli 1 fs.gotolink Defs.book:ZRIUTA_defi 2 fs.gotolink Defs.book:ZRIUTB_defi 3 fs.gotolink Defs.book:ZSCT1_defli 4 fs.gotolink Defs.book:ZSCT2_defli 5 fs.gotolink Defs.book:ZTST11_defi 6 fs.gotolink Defs.book:ZCST_defoli 7 fs.gotolink Defs.book:ZSPYBLU_def 8 fs.gotolink Defs.book:RA_APER1_defk D 9 ookgotolink Defs.book:DECAPER1_deffs. : ZFIgotolink Defs.book:EQUINOX_def ; ZFIgotolink Defs.book:SUNANGLE_defook < T_dgotolink Defs.book:MOONANGL_defZHD = fligotolink Defs.book:SUN_ALT_def > fligotolink Defs.book:FGSLOCK_def ? defgotolink Defs.book:DATE-OBS_defST2 @ ' gotolink Defs.book:TIME-OBS_defefi A fs.gotolink Defs.book:EXPSTART_def) B gogotolink Defs.book:EXPEND_def C gogotolink Defs.book:EXPTIME_def D gogotolink Defs.book:EXPFLAG_def E gogotolink Defs.book:TARGNAME_deffs. F oligotolink Defs.book:RA_TARG_def G oligotolink Defs.book:DEC_TARG_defgo H k Dgotolink Defs.book:PEQUINOX_defoli I fs.gotolink Defs.book:PROPOSID_defk D J ookgotolink Defs.book:PEP_EXPO_deffs. K ZRIgotolink Defs.book:LINENUM_def L ZSCgotolink Defs.book:SEQLINE_def M ZSCgotolink Defs.book:SEQNAME_def N ZTSgotolink Defs.book:END_def O ooknewlink HRS_IMGfs. P oligotolink Defs.book:SIMPLE_def. Q oligotolink Defs.book:BITPIX_def R gogotolink Defs.book:DATATYPE_def: S gogotolink Defs.book:NAXIS_def T gogotolink Defs.book:NAXIS1_defk U T_dgotolink Defs.book:NAXIS2_defe V = gotolink Defs.book:GROUPS_defT W > gotolink Defs.book:GCOUNT_defK X ? gotolink Defs.book:PCOUNT_defB Y ST2gotolink Defs.book:CRVALi_defM Z _degotolink Defs.book:CRVALi_defk [ TARgotolink Defs.book:CRPIXi_def. \ EXPgotolink Defs.book:CRPIXi_def. ] EXPgotolink Defs.book:CDi_j_defs. ^ EXPgotolink Defs.book:CDi_j_defs. _ TARgotolink Defs.book:CDi_j_def D ` ookgotolink Defs.book:CDi_j_def D a ookgotolink Defs.book:DATAMIN_def b fs.gotolink Defs.book:DATAMAX_def c k Dgotolink Defs.book:MIR_REVR_defgo d k Dgotolink Defs.book:ORIENTAT_defgo e k Dgotolink Defs.book:FILLCNT_def f k Dgotolink Defs.book:ERRCNT_defo g k Dgotolink Defs.book:PKTTIME_def h k Dgotolink Defs.book:CTYPEi_defn i _IMgotolink Defs.book:CTYPEi_defk j LE_gotolink Defs.book:MAP_NUM_def k IX_gotolink Defs.book:INSTRUME_defDAT l _degotolink Defs.book:ROOTNAME_defNAX m f gotolink Defs.book:FILETYPE_defS1_ n U gotolink Defs.book:RPTOBS_def_ o V gotolink Defs.book:SRCHSIZE_defefT p > gotolink Defs.book:BRIGHT_defK q ? gotolink Defs.book:FAINT_deffB r ST2gotolink Defs.book:LOCATE_defM s _degotolink Defs.book:MAP_def t [ gotolink Defs.book:DELTA_X_def u \ gotolink Defs.book:DELTA_Y_def v ] gotolink Defs.book:PRECISN_def w ^ gotolink Defs.book:STEPTIME_deffs. x TARgotolink Defs.book:FINCODE_def y ookgotolink Defs.book:OBSMODE_def z ookgotolink Defs.book:DETECTOR_defb { gogotolink Defs.book:GRATING_def | gogotolink Defs.book:DATE_defgo } k Dgotolink Defs.book:PODPSFF_def ~ e gotolink Defs.book:STDCFFF_def  f gotolink Defs.book:STDCFFP_def g gotolink Defs.book:PKTFMT_defE gotolink Defs.book:RA_APER1_defefn _IMgotolink Defs.book:DECAPER1_defj  !gogotolink Defs.book:ZFLUXM_def "gogotolink Defs.book:EQUINOX_def #_degotolink Defs.book:SUNANGLE_defNAX $f gotolink Defs.book:MOONANGL_defS1_ %U gotolink Defs.book:SUN_ALT_def &V gotolink Defs.book:FGSLOCK_def 'p gotolink Defs.book:DATE-OBS_defefK (? gotolink Defs.book:TIME-OBS_defr  )gogotolink Defs.book:EXPSTART_def_de *oligotolink Defs.book:EXPEND_defo +k Dgotolink Defs.book:EXPTIME_def ,k Dgotolink Defs.book:EXPFLAG_def -k Dgotolink Defs.book:TARGNAME_defoli .fs.gotolink Defs.book:RA_TARG_def /k Dgotolink Defs.book:DEC_TARG_defoli 0fs.gotolink Defs.book:PEQUINOX_defk D 1ookgotolink Defs.book:PROPOSID_defk D 2ookgotolink Defs.book:PEP_EXPO_deffs. 3DATgotolink Defs.book:LINENUM_def 4PODgotolink Defs.book:SEQLINE_def 5STDgotolink Defs.book:SEQNAME_def 6STDgotolink Defs.book:END_def 7ooknewlink HRS_UDL 8oligotolink Defs.book:SIMPLE_def 9gogotolink Defs.book:BITPIX_def :gogotolink Defs.book:DATATYPE_def " ;gogotolink Defs.book:NAXIS_def # <gogotolink Defs.book:NAXIS1_defX =f gotolink Defs.book:GROUPS_defe > %gotolink Defs.book:GCOUNT_defT ? &gotolink Defs.book:PCOUNT_defK @ 'gotolink Defs.book:FILLCNT_def AefKgotolink Defs.book:ERRCNT_defM B_degotolink Defs.book:PKTTIME_def CTARgotolink Defs.book:INSTRUME_defook DND_gotolink Defs.book:ROOTNAME_defEXP Edefgotolink Defs.book:FILETYPE_defLAG F -gotolink Defs.book:CTYPE1_defM Goligotolink Defs.book:OBSMODE_def Hdefgotolink Defs.book:DATE_defDEC I_degotolink Defs.book:ZDOPMAG_def JINOgotolink Defs.book:ZFLUXM_def. KPROgotolink Defs.book:ZFSPYBF_def Lookgotolink Defs.book:ZFXMAPC_def Mfs.gotolink Defs.book:ZFYMAPC_def Nfs.gotolink Defs.book:ZINTPER_def Ofs.gotolink Defs.book:ZSPYBALU_defk D Pookgotolink Defs.book:ZSRCHLCE_def Qoligotolink Defs.book:ZSRCHLCF_def 9 Rgogotolink Defs.book:ZTREFH_def: Sgogotolink Defs.book:ZXDCALU_def Tgogotolink Defs.book:ZXDCALP_def Ugogotolink Defs.book:ZYDCALU_def Vf gotolink Defs.book:ZYDCALP_def W %gotolink Defs.book:TARGNAME_def ? Xgogotolink Defs.book:RA_TARG_def Ygogotolink Defs.book:DEC_TARG_defefK Zoligotolink Defs.book:PEQUINOX_defgo [k Dgotolink Defs.book:PROPOSID_defoli \fs.gotolink Defs.book:PEP_EXPO_defoli ]fs.gotolink Defs.book:LINENUM_def ^k Dgotolink Defs.book:SEQLINE_def _oligotolink Defs.book:SEQNAME_def `oligotolink Defs.book:END_def agonewlink HRS_SHPDAT bDECgotolink Defs.book:SIMPLE_defO cdefgotolink Defs.book:BITPIX_defL def.gotolink Defs.book:DATATYPE_defYBF e Lgotolink Defs.book:NAXIS_defPC f Mgotolink Defs.book:NAXIS1_defC g Ngotolink Defs.book:GROUPS_defR h Ogotolink Defs.book:GCOUNT_defL ik Dgotolink Defs.book:PCOUNT_defR j gotolink Defs.book:FILLCNT_def kHLCgotolink Defs.book:ERRCNT_def. lZTRgotolink Defs.book:PKTTIME_def mZXDgotolink Defs.book:INSTRUME_defook nALPgotolink Defs.book:ROOTNAME_defZYD odefgotolink Defs.book:FILETYPE_defALP p Wgotolink Defs.book:CTYPE1_defM q ?gotolink Defs.book:DEFAULTS_defARG r Ygotolink Defs.book:SCIDATA_def sefKgotolink Defs.book:DATE_defPEQ t_degotolink Defs.book:DCFOBSN_def uOSIgotolink Defs.book:PROC_TYP_defook vEXPgotolink Defs.book:CLKDRFTR_defook wNUMgotolink Defs.book:CLKRATE_def xINEgotolink Defs.book:SPCLINCN_defSEQ ydefgotolink Defs.book:UTCO1_defND z agotolink Defs.book:UTCO2_defEC {oligotolink Defs.book:UTC0_defdef |oligotolink Defs.book:ZACMODE1_defgo }k Dgotolink Defs.book:ZDEBTF_defL ~oligotolink Defs.book:ZDEBTR_defM oligotolink Defs.book:ZDETT1_defN oligotolink Defs.book:ZDETT2_defO oligotolink Defs.book:ZDRT_defk D oligotolink Defs.book:ZDT11_def  oligotolink Defs.book:ZDT12_defLC oligotolink Defs.book:ZET11_defTR oligotolink Defs.book:ZET31_defXD oligotolink Defs.book:ZFIAT_def n gogotolink Defs.book:ZFIBT_defYD defgotolink Defs.book:ZFICT_defde  pgotolink Defs.book:ZHDC1_def1_  qgotolink Defs.book:ZHDC2_defLT ARGgotolink Defs.book:ZHVPST1_def defgotolink Defs.book:ZHVPST2_def PEQgotolink Defs.book:ZMEBT1_defF defgotolink Defs.book:ZMEBT2_defO _degotolink Defs.book:ZOBBT_defok RFTgotolink Defs.book:ZOBT11_def. CLKgotolink Defs.book:ZPABT1_def. SPCgotolink Defs.book:ZPABT2_defD ookgotolink Defs.book:ZPCC1_def D ookgotolink Defs.book:ZPCC2_def D ookgotolink Defs.book:ZPCV1_def D ookgotolink Defs.book:ZPCV2_defli fs.gotolink Defs.book:ZRIUTA_defi fs.gotolink Defs.book:ZRIUTB_defi fs.gotolink Defs.book:ZSCT1_defli fs.gotolink Defs.book:ZSCT2_defli fs.gotolink Defs.book:ZTST11_defi fs.gotolink Defs.book:ZCST_defoli fs.gotolink Defs.book:PROGRMID_defk D ookgotolink Defs.book:PR_INV_L_deffs. ZETgotolink Defs.book:PR_INV_F_defook T_dgotolink Defs.book:PR_INV_M_defZFI fYDgotolink Defs.book:AFFILIAT_defT_d  gotolink Defs.book:ACCPDATE_deff1_  qgotolink Defs.book:OBSET_ID_def  gogotolink Defs.book:CALIBRAT_defdef oligotolink Defs.book:OBSERVTN_defgo k Dgotolink Defs.book:EXPACKET_defoli fs.gotolink Defs.book:PRODTYPE_defk D ookgotolink Defs.book:OPFORMAT_deffs. ZOBgotolink Defs.book:CALIBTYP_defook T1_gotolink Defs.book:CDBSDATA_defZPA efDgotolink Defs.book:SS_MODE_def f Dgotolink Defs.book:SS_DET_defC f Dgotolink Defs.book:SS_GRAT_def f Dgotolink Defs.book:RTAMATCH_def2_d  gotolink Defs.book:WRD11_14_defefi fs.gotolink Defs.book:PSTRTIME_def  gogotolink Defs.book:PSTPTIME_deffs. oligotolink Defs.book:APEROBJ_def oligotolink Defs.book:APERSKY_def oligotolink Defs.book:TARG_ID_def oligotolink Defs.book:APERTYPE_defook oligotolink Defs.book:RA_V1_def  gogotolink Defs.book:DEC_V1_defk T_dgotolink Defs.book:PA_V3_defde  gotolink Defs.book:APEROFFX_def_de  gotolink Defs.book:APEROFFY_def_de  gotolink Defs.book:ANGLESEP_def_de  gotolink Defs.book:DGESTAR_def defgotolink Defs.book:SGESTAR_def _degotolink Defs.book:PA_APER_def! CKEgotolink Defs.book:PA_REF_def." PROgotolink Defs.book:SAAAVOID_deffs.# OPFgotolink Defs.book:TARAQMOD_deffs.$ CALgotolink Defs.book:POSTNSTX_deffs.% CDBgotolink Defs.book:POSTNSTY_deffs.& SS_gotolink Defs.book:POSTNSTZ_defook' ET_gotolink Defs.book:VELOCSTX_defSS_( defgotolink Defs.book:VELOCSTY_defATC) 2_dgotolink Defs.book:VELOCSTZ_def1_1* efigotolink Defs.book:RA_SUN_defT+ _degotolink Defs.book:DEC_SUN_def, TIMgotolink Defs.book:RA_MOON_def- APEgotolink Defs.book:DEC_MOON_defook. 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UT`HIGH RESOLUTION SPECTROGRAPH =UR UThSCIENCE DATA HEADER   L`  Z` hhnoFSIMPLE  = F image conforms to the fits standard vhfFBITPIX  != 32 bits per data value hGDATATYPE "= REAL*4 datatype of the array hENAXIS  #= 1 number of data axes hFNAXIS1  $= 500 length of first data axis (science diode hFGROUPS  %= T image is in group format hFGCOUNT  &= 1 number of groups hFPCOUNT  '= 25 number of group parameters  O PSIZE = 960 bits in the group parameter block ,K@I #UT`HIJ `  `J / GROUP PARAMETERS: OSS `  v*hBIIPTYPE1 = CRVAL1  ( pixel number 8`TYR PDTYPE1 = REAL*8 C F`#R PSIZE1 = 64 I Th IPTYPE2 = CRPIX1  ) pixel number of reference pixel b`imR PDTYPE2 = REAL*4 C p`ouR PSIZE2 = 32 I ~hrsHPTYPE3 = CD1_1  * pixel increment n `r R PDTYPE3 = REAL*4 C ` R PSIZE3 = 32 I h JPTYPE4 = DATAMIN  + the minimum value of the data `R PDTYPE4 = REAL*4 C `R PSIZE4 = 32 I hJPTYPE5 = DATAMAX  , the maximum value of the data `R PDTYPE5 = REAL*4 C `R PSIZE5 = 32 I hJPTYPE6 = RA_APER  - right ascension of aperture (deg)  `R PDTYPE6 = REAL*8 C `R PSIZE6 = 64 I &hJPTYPE7 = DEC_APER . declination of aperture (deg) 4`R PDTYPE7 = REAL*8 C B`R PSIZE7 = 64 I PhJPTYPE8 = FILLCNT  / number of segments containing fill ^`R PDTYPE8 = INTEGER*4 C l`R PSIZE8 = 32 I zhIPTYPE9 = ERRCNT  0 the error count of the data dR durHH HH . `R PDTYPE9 = INTEGER*4 C `R PSIZE9 = 32 I $hJPTYPE10 = PKTTIME  1 time from the packet ancillary data 2 / PDTYPE10= REAL*8 (Modified Julian >@ #Date) C L`LLR PSIZE10 = 64 I Zh IPTYPE11 = CTYPE1  2 the first coordinate type h  O PDTYPE11= CHARACTER*8 t@RCC `ntR PSIZE11 = 64 I `J ` ` J / GROUP PARAMETERS: PODPS `  hIPTYPE12 = OBSRPT  3 observation repeat number `=R PDTYPE12= INTEGER*4 C `R PSIZE12 = 32 I h IPTYPE13 = OBSINT  4 intermediate readout number ` R PDTYPE13= INTEGER*4 C ` R PSIZE13 = 32 I h GPTYPE14 = YDEF  5 vertical deflection 1 =*` R PDTYPE14= INTEGER*4 C 8` R PSIZE14 = 32 I Fh GPTYPE15 = XDEF  6 horizontal deflection T`R PDTYPE15= INTEGER*4 C b`R PSIZE15 = 32 I phIPTYPE16 = SAMPLE  7 sample position ~`R PDTYPE16= REAL*4 C `R PSIZE16 = 32 I hIPTYPE17 = DELTAS  8 delta sample position `R PDTYPE17= REAL*4 C `R PSIZE17 = 32 I hGPTYPE18 = LINE  9 line positions `R PDTYPE18= REAL*4 C `R PSIZE18 = 32 I hJPTYPE19 = EXPOSURE : exposure time (seconds) `R PDTYPE19= REAL*4 C  `R PSIZE19 = 32 I hHPTYPE20 = BINID  ; binid &`R PDTYPE20= INTEGER*4 C 4`R PSIZE20 = 32 I BhIPTYPE21 = CARPOS  < carrousel position P`R PDTYPE21= INTEGER*4 C ^`R PSIZE21 = 32 I lhJPTYPE22 = ZSCOEF1  = first coefficient of sample mapping z`R PDTYPE22= REAL*4 C dYP HH HHZE.2 ` R PSIZE22 = 32 I hinJPTYPE23 = ZSCOEF2  > second coefficient of sample mapping $` R PDTYPE23= REAL*4 C 2` R PSIZE23 = 32 I @hcaJPTYPE24 = ZSCOEF3  ? third coefficient of sample mapping N` R PDTYPE24= REAL*4 C \` R PSIZE24 = 32 I jh fJPTYPE25 = ZSCOEF4  @ fourth coefficient of sample mapping x` R PDTYPE25= REAL*4 C `R PSIZE25 = 32 I `J ` `= J / HRS DATA DESCRIPTOR KEYWORDS `3= *4 h GINSTRUME A= HRS instrument in use 3 =h GROOTNAME B= rootname of the observation set JPTh3 GFILETYPE C= SCI shp, udl, ext, sci, img, wav, flx R Ph EBUNIT  D= COUNTS brightness units ` =J `PT =  `@J / HRS PATTERN KEYWORDS .`  <h ENBINS  E= number of substep bins in this pattern Jh  ENINIT  F= number of initial deflections Xh  FRPTOBS  G= expected number of observation repeats fh  FINTOBS  H= expected number of intermediate readouts th 3=FBINID1  I= bin id of substep 1 (0 = no data, 7 = da h  FBINID2  J= bin id of substep 2 (1 = star small aper h sFBINID3  K= bin id of substep 3 (2 = star large aper h, FBINID4  L= bin id of substep 4 (3 = upper interorde h FBINID5  M= bin id of substep 5 (4 = lower interorde h FBINID6  N= bin id of substep 6 (5 = sky small apert h FBINID7  O= bin id of substep 7 (6 = sky large apert hFIXDEF1  P= initial x deflection 1 hFIXDEF2  Q= initial x deflection 2 hFIXDEF3  R= initial x deflection 3 hFIXDEF4  S= initial x deflection 4 hFIXDEF5  T= initial x deflection 5 hFIYDEF1  U= initial y deflection 1 *hFIYDEF2  V= initial y deflection 2 8hFIYDEF3  W= initial y deflection 3 FhFIYDEF4  X= initial y deflection 4 ThFIYDEF5  Y= initial y deflection 5 bhEHOFF1  Z= horizontal offset bin 2 lphEHOFF2  [= horizontal offset bin 3 ~hEHOFF3  \= horizontal offset bin 4 dIX HH HH S. h flEHOFF4  ]= horizontal offset bin 5 h!flEHOFF5  ^= horizontal offset bin 6 $h"flEHOFF6  _= horizontal offset bin 7 2h#flEVOFF1  `= vertical offset bin 2 @h$flEVOFF2  a= vertical offset bin 3 Nh%flEVOFF3  b= vertical offset bin 4 \h&flEVOFF4  c= vertical offset bin 5 jh'EVOFF5  d= vertical offset bin 6 xh(fsEVOFF6  e= vertical offset bin 7 h)fsFRPTCD1  f= repeat code bin 2 (0 = no def offset) h*FRPTCD2  g= repeat code bin 3 (1 = every time) h+FRPTCD3  h= repeat code bin 4 (2 = every 2nd time) h,FRPTCD4  i= repeat code bin 5 (4 = every 4th time) h-FRPTCD5  j= repeat code bin 6 (8 = every 8th time) h.FRPTCD6  k= repeat code bin 7 h/GZXDCALU  l= x comp null deflection cal correction h0GZXDCALP  m= proportional x-deflection cal correction h1&GZYDCALU  n= y comp null deflection cal correction h2GZYDCALP  o= proportional y-deflection cal correction xh3VOEINFOB  p= deflection pairs/substep pattern  h4RPEINFOC  q= largest repeat code in the substep patte .h5RPFSCIDMP  r= intermediate data dump (-1 = nodump) <h6RPFMAXGSS  s= maximum substep patterns/observation Jh7RPFMERGED  t= number of merged spectra in this pattern Xh8RPGSTEPPATT u= step pattern sequence fh9D6GSTEPTIME v= integration time at step pattern positio th:GFP_SPLIT w= fp-split (NO, TWO, FOUR, DSTWO, DSFOUR) h;GCOMB_ADD x= comb-addition (NO, TWO, FOUR, DSTWO, DSF h<GFINCODE  y= observation termination code h=GDOPPLER  z= on-board doppler compensation (ON, OFF) h>EMETER  {= exposure meter enabled `?J `@ r `A dJ / CALIBRATION FLAGS AND INDICATORS `Bpa s/ohCGOBSMODE  |= observation mode thhDGDETECTOR }= detector in use (1-2) hEGGRATING  ~= grating,echelle or mirror in use rn hFGAPERTURE = aperture name , D*`GJ 8`H h<F`I J / CALIBRATION REFERENCE FILES T`J  bhKppGDIOHFILE = diode response header file phLr GPHCHFILE = photocathode response header file ~hM GVIGHFILE = vignetting response header file ddN  HH paHH . hN mGABSHFILE = absolute flux header file hO uGNETHFILE = absolute flux wavelength net header file $hPelGDQIHFILE = data quality initialization header file 2hQmeDCCR1  = photocathode line mapping parameters tab @hR DCCR2  = photocathode sample parameters table NhS DCCR3  = detector parameters table \hT DCCR4  = wavelength ranges table hejhU DCCR5  = spectral order constants table e xhVleDCCR6  = dispersion constants table inhWfiDCCR7  = thermal constants table hXDCCR8  = incidence angle coefficients table hY mDCCR9  = echelle interpolation constants table hZODCCRA  = echelle non-interpolation constants tabl fh[DCCRB  = scattered light correction factors deh\DCCG2  = paired-pulse correction table me`]J `^ `_ J / CALIBRATION SWITCHES ``  avehae GDQI_CORR = PERFORM data quality initialization ral hbabGEXP_CORR = PERFORM division by exposure time n c.hc GDIO_CORR = PERFORM diode response correction ant<hd GPPC_CORR = PERFORM paired-pulse correction oefJhe GMAP_CORR = PERFORM mapping function coXhf GDOP_CORR = PERFORM doppler compensation cofhgGPHC_CORR = PERFORM removal of photocathode nonuniformity ctothhGVIG_CORR = PERFORM removal of vignetting nonuniformity hiGMER_CORR = PERFORM merging of substep bins hjGMDF_CORR = PERFORM median filter of background spectra WIThk GMNF_CORR = PERFORM mean filter of background spectra Rhl dGPLY_CORR = PERFORM polynomial smoothing of background spect Rhm dGBCK_CORR = PERFORM background removal Rhn dGADC_CORR = PERFORM application of dispersion constants Rho pGIAC_CORR = PERFORM incidence angle correction Rhp mGECH_CORR = PERFORM correction for echelle ripple Rhq dGFLX_CORR = PERFORM absolute flux calibration Rhr rGHEL_CORR = PERFORM conversion to heliocentric wavelengths Rhs rGVAC_CORR = PERFORM vacuum to air correction R`t mJ *`u m fi8`v sJ / CALIBRATION KEYWORDS F`wpe ThxFDOPZER  = doppler shift zero phase time (Mod Julia bhyFDOPMAG  = doppler shift scaling correction magnitu phzFSCLAMP  = spectral calibration lamp ~h{GZLCOEF1  = -999.00 line mapping function L0 tiodp= HH riHHFL.h| aGZLCOEF2  = -999.00 line mapping function A Rh} cGSPORDER  = -999 spectral order R$h~ vGMINWAVE  = 0.0 minimum wavelength (angstroms) 2h GMAXWAVE  = -1.0 maximum wavelength (angstroms) 8@` J N`  T\`DOJ / STATISTICAL KEYWORDS j`AG  xhleDDATE  = date this file was written (dd/mm/yy) htrGPODPSFF  = 0=(no podps fill), 1=(podps fill present = hppGSTDCFFF  = 0=(no st dcf fill), 1=(st dcf fill prese h= GSTDCFFP  = st dcf fill pattern (hex) hFPKTFMT  = packet format code `J ` `J / CDBS KEYWORDS ` = ` wJ `  h GZFSPYBF  = control bits for spectrum y-balance  hYWGZFXMAPC  = x deflection of the center of field map .hGZFYMAPC  = y deflection of the center of fiels map h<h FZDEBTF  = DEB front post amp. temperature JhFZDEBTR  = DEB rear post amp temperature XhFFFZDETT1  = det. 1 temperature fhPKFZDETT2  = det. 2 temperature th DZDRT  = digicon radiator tem hEZDT11  = det. 1 detector shield temperature #1 h EZDT12  = det. 2 detector shield temperature #1 h EZET11  = det. 1 enclosure temperature #1 h EZET31  = det. 1 enclosure temperature #3 hEZFIAT  = fixture interface A temperature mhEZFIBT  = fixture interface B temperature ehEZFICT  = fixture interface C temperature rhEZHDC1  = det. 1 horizontal deflection current hEZHDC2  = det. 2 horizontal deflection current hGZHVPST1  = det. 1 high voltage power supply tempera hGZHVPST2  = det. 2 high voltage power supply tempera hFZMEBT1  = main elec box 1 temperature *hFZMEBT2  = main elec box 2 temperature 8hEZOBBT  = optical bench bulkhead temperature FhFZOBT11  = det. 1 optical bench temperature #1 ThFZPABT1  = det. 1 preamp assembly box temperature bhFZPABT2  = det. 2 preamp assembly box temperature phEZPCC1  = det. 1 photo cathode current ~hEZPCC2  = det. 2 photo cathode current d2 HH HH . dh pEZPCV1  = det. 1 photo cathode high voltage htaEZPCV2  = det. 2 photo cathode high voltage $hx FZRIUTA  = RIU A internal temperature 2hx FZRIUTB  = RIU B internal temperature @hEZSCT1  = det. 1 spectral calibration lamp tempera NhalEZSCT2  = det. 2 spectral calibration lamp tempera \hp FZTST11  = det. 1 thermal shelf temperature #1 jhp DZCST  = carrousel stator temperature xhcaGZSPYBLU  = spectrum y-balance offset `odJ ` `J / APERTURE POSITION `  1 h vGRA_APER1 = right ascension of the aperture (deg) hothtaGDECAPER1 = declination of the aperture (deg) nal` J `  @`=J / EXPOSURE INFORMATION `2  h2 GEQUINOX  = J2000 equinox of the celestial coordinate syst =  hheGSUNANGLE = angle between sun and V1 axis (deg) .horGMOONANGL = angle between moon and V1 axis (deg) <hncGSUN_ALT  = altitude of the sun above Earths limb ( Jh GFGSLOCK  = commanded FGS lock (FINE,COARSE,GYROS,UN X` J f` vth= GDATE-OBS = UT date of start of observation (dd/mm/y tah= GTIME-OBS = UT time of start of observation (hh:mm:s h GEXPSTART = exposure start time (Modified Julian Dat hFEXPEND  = exposure end time (Modified Julian Date) hGEXPTIME  = exposure duration (seconds)--calculated uinhl GEXPFLAG  = Exposure interruption indicator gle`1 J `V1 (d`J / TARGET & PROPOSAL ID ` hh GTARGNAME = proposers target name `h GRA_TARG  = right ascension of the target (deg) (J20 `hGDEC_TARG = declination of the target (deg) (J2000) n (*hGPEQUINOX = proposed equinox of celestial coordinate n (8`J F` hTh GPROPOSID = PEP proposal identifier bh= GPEP_EXPO = PEP exposure identifier including sequen l ph= GLINENUM  = PEP proposal line number 1 ~h GSEQLINE  = PEP line number of defined sequence V1d  &HH HH.h GSEQNAME  = PEP define/use sequence name h` J $`  2h oEND   @` N`IN \` p oj`es lx` `  `  `  ` ` `PR S`  P`fi ` `PE X`  P `fi i.`l  <`LI UJ`  PX`um f`1  t`SE N`  P`de e`V1 ` ` ` `  ` ` `  E`  `se n*`  8`  F`  T`  b`  p`  ~` oHH HH, o`es l!UT UT`HIGH RESOLUTION SPECTROGRAPH ;UR UTh  TARGET ACQUISITION HEADER   J`  `X`  PRfh FSIMPLE  = F image conforms to the fits standard th FBITPIX  = 32 bits per data value hGDATATYPE = REAL*4 datatype of the array hENAXIS  = 2 number of data axes hFNAXIS1  = length of first data axis (samples per l h FNAXIS2  = length of second data axis (lines per im hseFGROUPS  = T image is in group format hFGCOUNT  = 1 number of groups hFPCOUNT  = 18 number of group parameters  O PSIZE = 736 bits in the group parameter block TA@EAI ` J  `e  rms`arJ / GROUP PARAMETERS: OSS (`  6hDAIPTYPE1 = CRVAL1   right ascension of reference pixel (deg) D`NAR PDTYPE1 = REAL*8 C R` R PSIZE1 = 64 I `h IPTYPE2 = CRVAL2   declination of reference pixel (deg) n`imR PDTYPE2 = REAL*8 C |`ouR PSIZE2 = 64 I h rsIPTYPE3 = CRPIX1   x-coordinate of reference pixel `!r R PDTYPE3 = REAL*4 C `" R PSIZE3 = 32 I h# IPTYPE4 = CRPIX2   y-coordinate of reference pixel `$R PDTYPE4 = REAL*4 C `%R PSIZE4 = 32 I h&HPTYPE5 = CD1_1   partial of the right ascension w.r.t. x `'R PDTYPE5 = REAL*4 C `(R PSIZE5 = 32 I h)HPTYPE6 = CD1_2   partial of the right ascension w.r.t. y `*R PDTYPE6 = REAL*4 C $`+R PSIZE6 = 32 I 2h,HPTYPE7 = CD2_1   partial of the declination w.r.t. x @`-R PDTYPE7 = REAL*4 C N`.R PSIZE7 = 32 I \h/HPTYPE8 = CD2_2   partial of the declination w.r.t. y j`0R PDTYPE8 = REAL*4 C x`1R PSIZE8 = 32 I dZE d HH HH.t. h2JPTYPE9 = DATAMIN   the minimum value of the data `3R PDTYPE9 = REAL*4 C $`4R PSIZE9 = 32 I 2h5JPTYPE10 = DATAMAX   the maximum value of the data @`6R PDTYPE10= REAL*4 C N`7R PSIZE10 = 32 I \h8JPTYPE11 = MIR_REVR  is the image mirror reversed j`9R PDTYPE11= LOGICAL*4 C x`:R PSIZE11 = 32 I h;JPTYPE12 = ORIENTAT  the orientation of the image (deg) `<R PDTYPE12= REAL*4 C `=R PSIZE12 = 32 I h>JPTYPE13 = FILLCNT   number of segments containing fill `?R PDTYPE13= INTEGER*4 C `@R PSIZE13 = 32 I hAIPTYPE14 = ERRCNT   number of segments containing errors `BR PDTYPE14= INTEGER*4 C `CR PSIZE14 = 32 I hDJPTYPE15 = PKTTIME   time from the packet ancillary data  E/ PDTYPE15= REAL*8 (Modified Julian th@Ehe#Date) C ,`F4 R PSIZE15 = 64 I :hG IPTYPE16 = CTYPE1   the first coordinate type H H,O PDTYPE16= CHARACTER*8 T@HERC b`I R PSIZE16 = 64 I phJ IPTYPE17 = CTYPE2   the second coordinate type C~ Kr O PDTYPE17= CHARACTER*8 @K C `L R PSIZE17 = 64 I `M J `Nat `OJ / GROUP PARAMETERS: PODPS `P  hQJPTYPE18 = MAP_NUM   mosaic map number `RR PDTYPE18= INTEGER*4 C `SR PSIZE18 = 32 I `TJ `U  $`VJ / HRS DATA DESCRIPTOR KEYWORDS 2`W @hX7=GINSTRUME = HRS instrument in use NhYC GROOTNAME = rootname of the observation set \hZ GFILETYPE = IMG file type jh[ FRPTOBS  = number of observation repeats x`\PAJ dP_apHH HH . `]  `^ J / HRS PATTERN KEYWORDS $`_  I 2h`GSRCHSIZE = width of spiral-search in dwell points @ha FBRIGHT  = upper threshold for star presence (count Nhb EFAINT  = lower threshold for star presence (count \hc iFLOCATE  = do a locate after the spiral search jhd CMAP  = dwell points at which to image the apert GFIxheG GDELTA_X  = x increment for map (deflection units) FRPhf GDELTA_Y  = y increment for map (deflection units) hg GPRECISN  = number of diodes used to map (HIGH=1,NOR hhGSTEPTIME = exposure time at each dwell point (secon hiGFINCODE  = observation termination code / `jDSJ `k  `lirJ / CALIBRATION FLAGS AND INDICATORS `mol sthn GOBSMODE  = TARGET ACQ data mode prhoGDETECTOR = detector in use (1-2) l shpGGRATING  = grating, echelle or mirror in use ap `qJ .`r <`s= J / STATISTICAL KEYWORDS J`t=  Xhus DDATE  = date this file was written (dd/mm/yy) fhvmeGPODPSFF  = 0=(no podps fill), 1=(podps fill present thw tGSTDCFFF  = 0=(no st dcf fill), 1=(st dcf fill prese hx GSTDCFFP  = st dcf fill pattern (hex) `lhy FPKTFMT  = packet format code `zJ `{ `|J / APERTURE POSITION `} = h~, GRA_APER1 = right ascension of the aperture (deg) h GDECAPER1 = declination of the aperture (deg) ` J ` `J / FLUX MEASURE `  *h fFZFLUXM  != flux measurement at end of targ. acq. ob 8`J F`fi tteT` J / EXPOSURE INFORMATION b`  ph GEQUINOX  "= J2000 equinox of the celestial coordinate syst ~h GSUNANGLE #= angle between sun and V1 axis (deg) dHH HHg). h GMOONANGL $= angle between moon and V1 axis (deg) h GSUN_ALT  %= altitude of the sun above Earths limb ( $hGFGSLOCK  &= commanded FGS lock (FINE,COARSE,GYROS,UN 2` J @`su t aNh. GDATE-OBS '= UT date of start of observation (dd/mm/y \h GTIME-OBS (= UT time of start of observation (hh:mm:s / jhONGEXPSTART )= exposure start time (Modified Julian Dat hxh FEXPEND  *= exposure end time (Modified Julian Date) hGEXPTIME  += exposure duration (seconds)--calculated dhGEXPFLAG  ,= Exposure interruption indicator `J `V1 (d`J / TARGET & PROPOSAL ID ` hh GTARGNAME -= proposers target name `h GRA_TARG  .= right ascension of the target (deg) (J20 `hGDEC_TARG /= declination of the target (deg) (J2000) n (hGPEQUINOX 0= proposed equinox of celestial coordinate n (`J  ` h.h *GPROPOSID 1= PEP proposal identifier <h= GPEP_EXPO 2= PEP exposure identifier including sequen Jh= GLINENUM  3= PEP proposal line number Xh GSEQLINE  4= PEP line number of defined sequence V1fhGSEQNAME  5= PEP define/use sequence name t`J `  hEND  6 `  r`th a` `DE A` d`ta t` ( `PE N`  p` c s*` ( 8`  F`  T`  b`  p`  ~` * RHH poHH,`  #UT UT`osHIGH RESOLUTION SPECTROGRAPH =UR UThUNIQUE DATA LOG  7 L`po ineZ`  hh FSIMPLE  8= F image conforms to the fits standard vhFBITPIX  9= 16 bits per data value hGDATATYPE := UNSIGNED*2 datatype of the array hENAXIS  ;= 1 number of data axes hFNAXIS1  <= 80 length of 1st data axis hFGROUPS  == T image is in group format hFGCOUNT  >= 1 number of groups hFPCOUNT  ?= 3 number of group parameters   RO PSIZE = 128 bits in the group parameter block @I  `osJ `po ine` J / GROUP PARAMETERS: OSS `  v*hBIJPTYPE1 = FILLCNT  @ number of segments containing fill 8`TYR PDTYPE1 = INTEGER*4 C F`;R PSIZE1 = 32 I Th IPTYPE2 = ERRCNT  A number of segments containing errors b`imR PDTYPE2 = INTEGER*4 C p`ouR PSIZE2 = 32 I ~hrsJPTYPE3 = PKTTIME  B time from the packet ancillary data  r / PDTYPE3 = REAL*8 (Modified Julian  @os#Date) C ` R PSIZE3 = 64 I `RSJ `=  ILL`erJ / HRS DATA DESCRIPTOR KEYWORDS `  h GINSTRUME C= HRS instrument in use h GROOTNAME D= rootname of the observation set A hGFILETYPE E= UDL file type h FCTYPE1  F= UNITLESS units for first data axis $` J 2`B e f@`ilJ / CALIBRATION FLAGS AND INDICATORS N` @\h GOBSMODE  G= observation mode j` J x`  d"d/ !YWHH HHIN.` iJ / STATISTICAL KEYWORDS ` r me $h sDDATE  H= date this file was written (dd/mm/yy) e 2` J @`s  N`J / CDBS KEYWORDS \` BjhGZDOPMAG  I= OCT doppler shift correction magnitude xhFZFLUXM  J= flux measurement at end of targ. acq. ob h GZFSPYBF  K= control bits for spectrum y-balance h GZFXMAPC  L= x deflection of the center of field map hGZFYMAPC  M= y deflection of the center of fiels map HhGZINTPER  N= OCT integration period (number of 50 ms h GZSPYBALU O= spectrum y-balance offset hGZSRCHLCE P= OCT y increment for field map d/mhGZSRCHLCF Q= OCT x increment for field map hFZTREFH  R= OCT time of zero doppler correction h GZXDCALU  S= x comp null deflection cal correction GZDh GZXDCALP  T= proportional x-deflection cal correction FZFh GZYDCALU  U= y comp null deflection cal correction PYB h GZYDCALP  V= prop y-def cal correction MAP.` J / TARGET & PROPOSAL ID <`  defJhteGTARGNAME W= proposers target name T iXh(nGRA_TARG  X= right ascension of the target (deg) (J20 ectfhetGDEC_TARG Y= declination of the target (deg) (J2000) T ythGPEQUINOX Z= proposed equinox of celestial coordinate T x`ldJ ` c tiohGPROPOSID [= PEP proposal identifier ionhGPEP_EXPO \= PEP exposure identifier including sequen ecthGLINENUM  ]= PEP proposal line number ionhGSEQLINE  ^= PEP line number of defined sequence hGSEQNAME  _= PEP define/use sequence name `J `  hEND  ` `  r`th a*`ct 8` DE AF`   dT` ta tb`  y p` = N~`  pHH inHH , `  #UT UT` HIGH RESOLUTION SPECTROGRAPH =UR UThSTANDARD HEADER PACKET  a L`en r Z`on hhEXFSIMPLE  b= F image conforms to the fits standard vhLIFBITPIX  c= 16 bits per data value hGDATATYPE d= UNSIGNED*2 datatype of the array hENAXIS  e= 1 number of data axes hFNAXIS1  f= 965 length of 1st data axis hFGROUPS  g= T image is in group format hFGCOUNT  h= 1 number of groups hFPCOUNT  i= 3 number of group parameters  O PSIZE = 128 bits in the group parameter block @ I UT` RJ `en r ` onJ / GROUP PARAMETERS: OSS `!  v*h"BIJPTYPE1 = FILLCNT  j number of segments containing fill 8`#TYR PDTYPE1 = INTEGER*4 C F`$eR PSIZE1 = 32 I Th% IPTYPE2 = ERRCNT  k number of segments containing errors b`&imR PDTYPE2 = INTEGER*4 C p`'ouR PSIZE2 = 32 I ~h(=JPTYPE3 = PKTTIME  l time from the packet ancillary data  )r / PDTYPE3 = REAL*8 (Modified Julian UT@) R#Date) C `* R PSIZE3 = 64 I `+RSJ `,=  ILL`-erJ / HRS DATA DESCRIPTOR KEYWORDS `.  h/ GINSTRUME m= HRS instrument in use h0 GROOTNAME n= rootname of the observation set k h1s GFILETYPE o= SHP file type h2 FCTYPE1  p= UNITLESS units for first data axis $h3 GDEFAULTS q= F default values used in reformatting thes = 2h4lGSCIDATA  r= T science data present:T/F (actual not pre 3 =@`5 J N`6* R P\`7 J / STATISTICAL KEYWORDS j`8  xh9 DDATE  s= date this file was written (dd/mm/yy) dS #DSHH HHRU. h:trGDCFOBSN  t= DCF observation number in SHP  h;tnGPROC_TYP u= NORMAL level of reprocessing (NORMAL, MINOR, MA  $`<e J 2`=s  irs@`> J / TIME CONVERSION KEYWORDS N`? t = \h@lGCLKDRFTR v= spacecraft clock drift rate 3 =jhA GCLKRATE  w= spacecraft clock rate xhB*GSPCLINCN x= spacecraft clock at UTC0 ICAhC EUTCO1  y= bytes 5-8 of UTC0 =hDhiEUTCO2  z= bytes 1-4 of UTC0 hEDUTC0  {= Coordinated Universal Time (Mod Julian D `F J `G  `H_TJ / CDBS KEYWORDS `I  hJ GZACMODE1 |= acquisition mode hK FZDEBTF  }= DEB front post amp. temperature hL FZDEBTR  ~= DEB rear post amp temperature hM FZDETT1  = det. 1 temperature  hN FZDETT2  = det. 2 temperature .hO DZDRT  = digicon radiator tem 5<hP EZDT11  = det. 1 detector shield temperature #1 1JhQ EZDT12  = det. 2 detector shield temperature #1 aXhR (EZET11  = det. 1 enclosure temperature #1 fhS EZET31  = det. 1 enclosure temperature #3 thT/ EZFIAT  = fixture interface A temperature hUEZFIBT  = fixture interface B temperature hVEZFICT  = fixture interface C temperature rhW(EZHDC1  = det. 1 horizontal deflection current hXEZHDC2  = det. 2 horizontal deflection current hYGZHVPST1  = det. 1 high voltage power supply tempera hZGZHVPST2  = det. 2 high voltage power supply tempera h[PFZMEBT1  = main elec box 1 temperature h\QFZMEBT2  = main elec box 2 temperature h]REZOBBT  = optical bench bulkhead temperature h^SFZOBT11  = det. 1 optical bench temperature #1 h_TFZPABT1  = det. 1 preamp assembly box temperature h`UFZPABT2  = det. 2 preamp assembly box temperature *haVEZPCC1  = det. 1 photo cathode current 8hbWEZPCC2  = det. 2 photo cathode current FhcXEZPCV1  = det. 1 photo cathode high voltage ThdYEZPCV2  = det. 2 photo cathode high voltage pbheFZRIUTA  = RIU A internal temperature phfFZRIUTB  = RIU B internal temperature ~hgEZSCT1  = det. 1 spectral calibration lamp tempera dZO$ HH e HH . hhalEZSCT2  = det. 2 spectral calibration lamp tempera hip FZTST11  = det. 1 thermal shelf temperature #1 $hjp DZCST  = carrousel stator temperature 2`kcaJ @`lod renN`mJ / SUPPORT SCHEDULE: PROGRAMMATIC DATA \`n hdjhoGPROGRMID = program id (base 36) xhp GPR_INV_L = last name of principal investigator FZRhq GPR_INV_F = first name of principal investigator T1 hr GPR_INV_M = middle initial of principal investigator hsGAFFILIAT = proposal class (eg: GO, IDT, OS) ht GACCPDATE = proposal acceptance date (yyyyddd) ionhuGOBSET_ID = observation set id atuhvGCALIBRAT = Y calibrate data flag hwGOBSERVTN = observation number (base 36) hxGEXPACKET = expected number of source packets ULEhyA GPRODTYPE = output product medium type Dhz pGOPFORMAT = output product format specification Lh{ lGCALIBTYP = calibration type : E, I or Blank F h| fGCDBSDATA = cdbs notification flag: CAL or FALSE M.`} mJ <`~ p al J`, J / SUPPORT SCHEDULE: FLAGS AND INDICATORS X`yy fhGSS_MODE  = data mode thFSS_DET  = detector in use (1-2) hGSS_GRAT  = grating,echelle or mirror in use mode hGRTAMATCH = above f&i match RTA (TRUE,FALSE,NO RTA F ets`J ` hz` J / SUPPORT SCHEDULE: DATA GROUP II DATA `  h tGWRD11_14 = word 11/14 (0-255) hcaGPSTRTIME = predicted obs. start time (yyyy.ddd:hh:m h GPSTPTIME = predicted obs. stop time (yyyy.ddd:hh:mm `h GAPEROBJ  = si object aperture id `hGAPERSKY  = si sky aperture id hGTARG_ID  = SPSS target ID from proposal+target no. *hGAPERTYPE = aperture type (SICS, SIAS, SIDS) ode8hERA_V1  = 0.0 right ascension of v1 axis of st (deg) NFhFDEC_V1  = 0.0 declination of v1 axis of st (deg) ThEPA_V3  = 0.0 position angle of v3 axis of st (deg) Pbh GGAPEROFFX = 0.0 x comp of object offset in aperture (arc tph= GAPEROFFY = 0.0 y comp of object offset in aperture (arc ca~h= GANGLESEP = 0.0 ang separation of target from ref obj (a ddi%yyHH HHpe.idh GDGESTAR  = FGS ID(F1,F2,F3) concat. w/ dom. gd. sta h GSGESTAR  = FGS ID(F1,F2,F3) concat. w/ subdom. gd. m p$h GPA_APER  = 0.0 position ang of aperture used with targe S, 2hbFPA_REF  = 0.0 position ang of target from ref. object @h) GSAAAVOID = SAA model for SAA Avoidance (range 02-99 xisNh GTARAQMOD = target acquisition mode (values 00, 01, s o\hGPOSTNSTX = 0.0 position of space telescope x axis (km) apjhGPOSTNSTY = 0.0 position of space telescope y axis (km) apxhGPOSTNSTZ = 0.0 position of space telescope z axis (km) romhGVELOCSTX = 0.0 vel of space telescope along x axis (km/ hGVELOCSTY = 0.0 vel of space telescope along y axis (km/ STAh GVELOCSTZ = 0.0 vel of space telescope along z axis (km/ STAh FRA_SUN  = 0.0 right ascension of the sun (deg) h0 GDEC_SUN  = 0.0 declination of the sun (deg) FPAh GRA_MOON  = 0.0 right ascension of the moon (deg) AVOh GDEC_MOON = 0.0 declination of the moon (deg) AQMh GVELABBRA = 0.0 aberration in position of the target TNSh GANNPARRA = 0.0 par. shift in position, non-solar sys ta TNSh GV2APERCE = 0.0 V2 offset of target from aper. center (a TNSh GV3APERCE = 0.0 V3 offset of target from aper. center (a OCS h GEQRADTRG = 0.0 equatorial radius of target (km) OCS.h GFLATNTRG = 0.0 flattening of target OCS<h GNPDECTRG = 0.0 north pole declination of target (deg) SUNJh GNPRATRG  = 0.0 north pole right ascension of target (de Xh dGROTRTTRG = 0.0 rotation rate of target fh rGLONGPMER = 0.0 longitude of prime meridian (deg) Nth dGEPLONGPM = 0.0 epoch of longitude of prime meridian (se Ah aGSURFLATD = 0.0 surface feature latitude (deg) Ah pGSURFLONG = 0.0 surface feature longitude (deg) Eh VGSURFALTD = 0.0 surface feature altitude (km) Eh VFMTFLAG  = moving target flag; T if it is a moving h GS0INVMAG = 0.0 S0 inverse magnitude TNTh FS0XDIR  = 0.0 S0 X direction h0 FS0YDIR  = 0.0 S0 Y direction h= FS0ZDIR  = 0.0 S0 Z direction h GTRK_TYPE = track 48 or track 51 commanding used (T4 hh GT51_RATE = 0.0 rate of motion commanded (arcsecs/sec) hh GT51_ANGL = 0.0 position angle of motion of aperture (de hh GTARGDIST = distance to target from Earths center ( h*h GPAR_CORR = parallax correction used (T or F) h8h FRA_REF  = 0.0 right ascension of reference object (deg FhGDEC_REF  = 0.0 declination of reference object (deg) hT` J b`  0 p`onJ / ONBOARD EPHEMERIS MODEL PARAMETERS ~`  d= & HH HH.= h8 GEPCHTIME = 0.0 epoch time of parameters (secs since 1/1 = h mGSDMEANAN = 0.0 2nd deriv coef for mean anomaly (revs/se = $hn GSDMA3SQ  = 0.0 3 * (SDMEANAN**2) radians/second**2. = 2he GHSTHORB  = 0.0 half the duration of the ST orbit (secon = @hx GCIRVELOC = 0.0 circular orbit linear velocity (meters/s = 0NhceGCOSINCLI = 0.0 cosine of inclination .0 \h oGECCENTRY = 0.0 eccentricity jh GECCENTX2 = 0.0 eccentricity times 2 `xh GECBDX4D3 = 0.0 eccentricity cubed times 4/3 `hGESQDX5D2 = 0.0 eccentricity squared times 5/2 hFECBDX3  = 0.0 eccentricity cubed times 3 h GFDMEANAN = 0.0 1st derivative coef for mean anomly (rev EANh GRCASCNRD = 0.0 rt chge right ascension ascend node (rad A3Sh GRCASCNRV = 0.0 rt chge right ascension ascend node (rev HORh GARGPERIG = 0.0 argument of perigee (revolutions/second) VELh GMEANANOM = 0.0 mean anomaly (radians) INCh GRCARGPER = 0.0 rate change of argument of perigee (revs ENTh GRASCASCN = 0.0 right ascension of ascending node (revol ENTh GSINEINCL = 0.0 sine of inclination DX4h GSEMILREC = 0.0 semi-latus rectum (meters) DX5 h GTIMEFFEC = 0.0 time parameters took effect (secs since DX3.h GOBSSTRTT = 0.0 predicted obs. start time (secs since 1/ N<` 1J J` r e rX`enJ / PROPOSAL INFO: Instrument Configuration f`en e (thFCONFIG  = proposed instrument configuration hFOPMODE  = proposed operation mode hFSPEC_1  = spectral element hNTFSPEC_2  = spectral element hl FSPEC_3 = spectral element h FSPEC_4 = spectral element h FAPER_1 = instrument aperture h (FAPER_2 = instrument aperture hmeFAPER_3 = instrument aperture h FAPER_4 = instrument aperture ` J ` ` J / PROPOSAL INFO: Target Description *`  pr8hodGTAR_TYPE= target type ctrFh GTARDESCR= target description l eTh GTARDESC2= target description (cont.) emebh GTARGCAT  = first target category t ph GTARKEY1  = target key description for targcat ~h GTARKEY2  = target key description for targcat dme' HH HH. hntGTARKEY3  = target key description for targcat h GTARKEY4  = target key description for targcat `$h GTARKEY5 = target key description for targcat `2hGTARGCAT2= second target category @hGTARKEY6 = target key description for targcat2 NhGTARKEY7 = target key description for targcat2 \hGTARKEY8 = target key description for targcat2 jhGTARKEY9 = target key description for targcat2 gcaxhGTARKEY10= target key description for targcat2 gcah(FALIAS1 = synonym for target name hFALIAS2 = synonym for target name ` J `  t`ioJ / PROPOSAL INFO: Flux Information `io tahEMAG_V = expected V Magnitude h FSURF_V = expected V surface brightness h EMAG_B = expected B Magnitude ih FSURF_B = expected B surface brightness hcaEMAG_U = expected U Magnitude e htaFSURF_U = expected U surface brightness .hfoEMAG_R = expected R Magnitude y<hamFSURF_R = expected R surface brightness Jh amGCOL_B_V = expected B-V color Xh  GCOL_U_B  = expected U-B color fh OPGCOL_V_R != expected V-R color tath EE_B_V "= E(B-V) h  GEXTNCT_V#= extinction in V `MAJ `_B `ctJ / PROPOSAL INFO: Exposure Information `U  tudh GCMD_EXP $= commanded time per exposure (from TRANS) bri` J ` `J / PROPOSAL INFO: Moving Target Information ` hV GMT_LV1_1%= moving target information hB GMT_LV1_2&= moving target information *hR GMT_LV1_3'= moving target information 8h GMT_LV1_4(= moving target information Fh GMT_LV1_5)= moving target information Th GMT_LV2_1*= moving target information ctbh GMT_LV2_2+= moving target information U phGMT_LV2_3,= moving target information TRA~hGMT_LV2_4-= moving target information d( HH MHH.h GMT_LV2_5.= moving target information h!GMT_LV3_1/= moving target information $h"GMT_LV3_20= moving target information 2h#GMT_LV3_31= moving target information @h$GMT_LV3_42= moving target information Nh%GMT_LV3_53= moving target information \`&J j`' hx`(J / PROPOSAL INFO: Target Properties `) h*etGREDSHIFT4= expected redshift of target h+GPARALLAX5= expected parallax of target h,EMU_RA 6= expected RA proper motion h-FMU_DEC 7= expected DEC proper motion h.GMU_EPOCH8= epoch of the proper motion h/GSP_TYPE 9= spectral type h0GRAD_VEL := radial velocity (km/sec) `1J `2 `3 J / PROPOSAL INFO: Spatial Scan Info  `4 .h5 GSCAN_TYP;= C:bostrophidon; D:Cwith dwell; N:unkno <h6GSCAN_WID<= scan width (arcsec) t Jh7GANG_SIDE== angle between sides of parallelogram (de t Xh8GDWELL_LN>= dwell points per line for scan pointing fh9GDWELL_TM?= wait time (duration) at each dwell point th:GSCAN_ANG@= position angle of scan line (deg) h;GSCAN_RATA= commanded rate of the line scan (arcsec/ h<GNO_LINESB= number of lines per scan (1-99) h=GSCAN_LENC= scan length (arcsec) h>GSCAN_CORD= scan coordinate frame of ref: celestial, : S`? J `@ C rop`AweJ / TARGET & PROPOSAL ID `B  hCGTARGNAMEE= proposers target name am hDGRA_TARG F= right ascension of the target (deg) (J20 ntihEGDEC_TARGG= declination of the target (deg) (J2000) pohFGPEQUINOXH= proposed equinox of celestial coordinate *`GJ 8`H FhI= GPROPOSIDI= PEP proposal identifier ThJ= GPEP_EXPOJ= PEP exposure identifier including sequen bhK= GLINENUM K= PEP proposal line number phL GSEQLINE L= PEP line number of defined sequence C~hMGSEQNAME M= PEP define/use sequence name d )TAHH rHHD`NJ `O $hP oEND N 2` %?H5v %?HDDin h    UDFHDv FK5  &CqFGDIJ =C?&71/2&4H, 4"/ /A{3'A2""/2C+$nCgl CiGFHDHK  Pigli7 +i#miFhKCqHGIDGJK P pC&1&^2/c4H)J4"&i/A{"ˣ'A#S"/#CwCne 2C IHJDFJ C2C=CF= &CqJIKDHK nFIgl .+HKJDGJq*duLeftdvRightd ReferencedNd d dddd ddd d  d  d ! Kd! " qd"!#d#"$d$#%d%$&Cd&%'id'&(d(')id)(K=]>HH@=J w$ TListC Jf> KCellBodyf?  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