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<HSTProposal
   Phase1ID="4"
   Phase2ID="15038"
   Phase="Phase I"
   AptVersion="Version 25.0.3 ">
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   <!--This file is automatically generated and should not be edited by hand. Editing this file directly is at your own risk.-->
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   <!--APT Version: Version 25.0.3 -->
   <!--Date: Tue Mar 14 04:08:29 GMT 2017-->
   
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            AptVersion="Version 25.0.3 "
            SubmissionCounter="2"
            SubmissionSuccessCounter="1"
            HasErrors="false"
            Cycle="25"
            IncludeSysInfo="true"
            NotificationAddress="jlinsky@jila.colorado.edu"
            AssignedID="4">
            
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               os.arch="amd64"
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               os.version="3.10.0-229.4.2.el7.x86_64"
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               linux.distribution="NAME=&quot;Red Hat Enterprise"
               linux.version="Workstation&quot;"
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            <SubmissionComments>This is a theory proposal.</SubmissionComments>
            
            <SubmissionCommentsCheckSum>-1187429708</SubmissionCommentsCheckSum>
            
            <SubmissionLog>Assigned ID: 4

----- Attempting Submission 1 (Mon Feb 13 18:39:55 GMT 2017) -----
HST Phase I Proposal 4 (chromo-APT.apt) successfully submitted.
Receipt: # 4-1

----- Attempting Submission 2 (Tue Mar 14 04:08:29 GMT 2017) -----</SubmissionLog>
            
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   <ProposalInformation
      Category="AR"
      PureParallelProposal="false"
      Cycle="25"
      STScIEditNumber="0">
      
      <Title>Model Atmospheres and Spectral Irradiance Library of the Exoplanet Host Stars Observed in the MUSCLES Survey</Title>
      
      <Abstract>We propose to compute state-of-the-art model atmospheres (photospheres, chromospheres, transition 
regions and coronae) of the 4 K and 7 M exoplanet host stars observed by HST in the MUSCLES Treasury 
Survey, the nearest host star Proxima Centauri, and TRAPPIST-1. Our semi-empirical models will fit the
unique high-resolution panchromatic (X-ray to infrared) spectra of these stars in the MAST High-Level 
Science Products archive consisting of COS and STIS UV spectra and near-simultaneous Chandra, XMM-Newton, and ground-based observations. We will compute models with the fully tested SSRPM 
computer software incorporating 52 atoms and ions in full non-LTE (435,986 spectral lines) and the 20 most-abundant diatomic molecules (about 2 million lines). This code has successfully fit the 
panchromatic spectrum of the M1.5~V exoplanet host star GJ~832 (Fontenla et al. 2016), the first 
M star with such a detailed model, and solar spectra. Our models will (1) predict the unobservable extreme-UV spectra, (2) determine radiative energy losses and balancing heating rates throughout 
these atmospheres, (3) compute a stellar irradiance library needed to describe the radiation 
environment of potentially habitable exoplanets to be studied by TESS and JWST, and (4) in the 
long post-HST era when UV observations will not be possible, the stellar irradiance library will be 
a powerful tool for predicting the panchromatic spectra of host stars that have only limited spectral coverage, in particular no UV spectra. The stellar models and spectral irradiance library will be 
placed quickly in MAST.</Abstract>
      
      <PrincipalInvestigator
         Honorific="Dr."
         FirstName="Jeffrey"
         MiddleInitial="L."
         LastName="Linsky"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="1697"
         Institution="University of Colorado at Boulder"
         Country="USA"
         State="CO"
         Contact="true" />
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="Kevin"
         LastName="France"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="6972"
         Institution="University of Colorado at Boulder"
         Country="USA"
         State="CO"
         Contact="false"
         AdminUSPI="false" />
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="Renyu"
         LastName="Hu"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="13769"
         Institution="Jet Propulsion Laboratory"
         Country="USA"
         State="CA"
         Contact="false"
         AdminUSPI="false" />
      
      <CoInvestigator
         Honorific="Ms."
         FirstName="Allison"
         LastName="Youngblood"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="12235"
         Institution="University of Colorado at Boulder"
         Country="USA"
         State="CO"
         Contact="false"
         AdminUSPI="false" />
      
      <CoInvestigator
         FirstName="Parke"
         LastName="Loyd"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="19526"
         Institution="University of Colorado at Boulder"
         Country="USA"
         State="CO"
         Contact="false"
         AdminUSPI="false" />
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="John"
         MiddleInitial="F."
         LastName="Fontenla"
         ESAMember="false"
         CSAMember="false"
         Retired="false"
         UniqueID="20799"
         Institution="NorthWest Research Associates, Inc."
         Country="USA"
         State="WA"
         Contact="false"
         AdminUSPI="false" />
      
      <Questions>
         
         <Phase2Questions>
            
            <ObservingDescription />
         </Phase2Questions>
      </Questions>
      
      <Phase1ProposalInformation
         Attachment="/home/jlinsky/APT_25.0.3/chromo.pdf">
         
         <ScientificCategory>Stellar Physics</ScientificCategory>
         
         <SecondaryScientificCategory>Planets and Planet Formation</SecondaryScientificCategory>
         
         <ScientificKeyword1
            Keyword="Atmospheres" />
         
         <ScientificKeyword2
            Keyword="Cool Stars" />
         
         <ScientificKeyword3
            Keyword="Low-Mass Stars" />
         
         <ScientificKeyword4
            Keyword="Radiative Transfer" />
         
         <ProprietaryPeriod
            Default="true">0</ProprietaryPeriod>
         
         <Budget>Regular</Budget>
         
         <CalibProp>false</CalibProp>
         
         <UvInit>true</UvInit>
         
         <Theory>true</Theory>
      </Phase1ProposalInformation>
      
      <Phase2ProposalInformation
         PCFlag="false">
         
         <Availability>SUPPORTED</Availability>
      </Phase2ProposalInformation>
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