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<HSTProposal
   Phase1ID="180"
   Phase2ID="11763"
   Phase="Phase I"
   AptVersion="Version 17.0.2 ">
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   <!--APT Version: Version 17.0.2 -->
   <!--Date: Fri Mar 07 20:10:13 GMT 2008-->
   
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            AptVersion="Version 17.0.2 "
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            Cycle="17"
            IncludeSysInfo="true"
            NotificationAddress="colsma@rit.edu"
            AssignedID="180">
            
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            <SubmissionComments />
            
            <SubmissionLog>Assigned ID: 180
----- Attempting Submission 1 (Thu Mar 06 19:49:34 GMT 2008) -----
  Phase I Proposal 180 (HST17.apt) successfully submitted.
----- Attempting Submission 2 (Fri Mar 07 20:10:13 GMT 2008) -----</SubmissionLog>
            
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   <ProposalInformation
      Category="AR"
      PureParallelProposal="false"
      Cycle="17"
      STScIEditNumber="0">
      
      <Title>Merging Supermassive Black Holes: Observational consequences of  Gravitational-Radiation Recoils, Spin and Gas Dynamics</Title>
      
      <Abstract>The merger of binary supermassive black holes (SMBHs) and the possibly substantial kick that follows 
will have a major effect on both circumstellar disks surrounding each SMBH as well as the circumbinary
disk surrounding the system,  These phenomena may play a crucial role in interpreting a number of 
objects observed with HST, including binary active galacitic nuclei (AGN) and "naked" quasars displaced 
from the centers of their host galaxies. Recent scientific breakthroughs (in large part by our group) 
in solving the Einstein's field equations in strong field gravity have enabled computational astrophysicists 
to study these dynamical effects in great detail. One of the most important discoveries is that the merger of 
spinning black holes can yield recoil velocities from gravitational radiation up to 4000 km/s.
Several candidate recoiling SMBHs may have been observed, but uncertainties in the theoretical predictions 
for observing such systems limit the ability to confirm detections.
In this proposal we describe a plan to simulate in full general relativity the mergers of SMBHs embedded in 
accretion disks, determining how these extremely large kicks influence the resulting observational signatures 
observable by HST. These effects should include, but may not be limited to, periodic emission from the initial 
binary system, bimodal emission from disks with induced eccentricities, and highly red/blueshifted broad line 
emission relative to narrow line emission from the portion of the disk carried away by the recoiling SMBH 
after the merger.</Abstract>
      
      <PrincipalInvestigator
         Honorific="Prof."
         FirstName="Carlos"
         MiddleInitial="Oscar"
         LastName="Lousto"
         ESAMember="false"
         AddressVerifiedCycle="17">
         
         <Address
            Institution="Rochester Institute of Technology"
            USState="NY"
            Country="USA" />
      </PrincipalInvestigator>
      
      <CoInvestigator
         Honorific="Prof."
         FirstName="Manuela"
         LastName="Campanelli"
         ESAMember="false"
         AdminUSPI="false"
         Contact="false"
         AddressVerifiedCycle="17">
         
         <Address
            Institution="Rochester Institute of Technology"
            USState="NY"
            Country="USA" />
      </CoInvestigator>
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="Joshua"
         LastName="Faber"
         ESAMember="false"
         AdminUSPI="false"
         Contact="false"
         AddressVerifiedCycle="17">
         
         <Address
            Institution="Rochester Institute of Technology"
            USState="NY"
            Country="USA" />
      </CoInvestigator>
      
      <CoInvestigator
         Honorific="Dr."
         FirstName="Yosef"
         LastName="Zlochower"
         ESAMember="false"
         AdminUSPI="false"
         Contact="false"
         AddressVerifiedCycle="17">
         
         <Address
            Institution="Rochester Institute of Technology"
            USState="NY"
            Country="USA" />
      </CoInvestigator>
      
      <Questions>
         
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            <RealtimeJustification />
            
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            <AdditionalComments />
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      <Orbits
         ThisCycle2GyroPrimary="1"
         ThisCycle2GyroParallel="0"
         NextCycle2GyroPrimary="0"
         NextCycle2GyroParallel="0"
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         AfterNext2GyroParallel="0" />
      
      <Phase1ProposalInformation
         TotalTargets="1"
         Attachment="/Users/Carlos/RIT/temp/HST17/phase1-AR.pdf">
         
         <ScientificCategory>AGN/QUASARS</ScientificCategory>
         
         <ScientificKeyword1
            Keyword="Accretion Disks" />
         
         <ScientificKeyword2
            Keyword="AGN Physics" />
         
         <ScientificKeyword3
            Keyword="Black Holes" />
         
         <ScientificKeyword4
            Keyword="Galaxy Centers" />
         
         <ScientificKeyword5
            Keyword="Interacting And Merging Galaxies" />
         
         <ProprietaryPeriod>12</ProprietaryPeriod>
         
         <Budget>55532</Budget>
         
         <CalibProp>false</CalibProp>
         
         <ChandraCoord>0.0</ChandraCoord>
         
         <NOAONights>0.0</NOAONights>
         
         <Treasury>false</Treasury>
         
         <Legacy>false</Legacy>
         
         <Theory>true</Theory>
         
         <LargeProgram>false</LargeProgram>
         
         <Survey>false</Survey>
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      <Phase2ProposalInformation
         PCFlag="false">
         
         <Availability>SUPPORTED</Availability>
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   <Observations />
   
   <Datasets />
   
   <Patterns />
   
   <Visits />
</HSTProposal>


