SIMPLE = T / Written by IDL: 2026-05-04T17:45:57 BITPIX = 32 / NAXIS = 0 / EXTEND = T / File contains extensions DATE = '2026-05-04T17:45:57' / file creation date (YYYY-MM-DDThh:mm:ss UTC) CREATOR = 'mwrfits: idl 8.8.2' / Software and version creating file LONGSTRN= 'OGIP 1.0' / The OGIP long string convention may be used. COMMENT This FITS file may contain long string keyword values that are COMMENT continued over multiple keywords. This convention uses the '&' COMMENT character at the end of a string which is then continued COMMENT on subsequent keywords whose name = 'CONTINUE'. FILENAME= '/vdata1/shared/ozge/gbm_magnetar_catalog/spectra/701071945/spectral&'CONTINUE '_data_tint_8_200/701071945_n8_bkg.pha' / Name of this file FILETYPE= 'SPECTRUM' /Name for this type of FITS file FILE-VER= '1.0.0 ' /Name for the format of this filetype ORIGIN = 'GIOC ' /Name of organization making file TELESCOP= 'GLAST ' /mission/satellite name INSTRUME= 'GBM ' /instrument/detector name DETNAM = 'NAI_08 ' / Specific detector name OBSERVER= 'Meegan ' /Name of instrument PI MJDREFI = 51910.0 /Reference epoch MJD date, integer part MJDREFF = 7.428703703703703E-04 /Reference epoch MJD, fractional part TIMESYS = 'TT ' /Time system used in time keywords TIMEUNIT= 's ' /Time unit used in TSTART, TSTOP and TRIGTIME OBJECT = 'SGR 1806-20' / Object name RADECSYS= 'FK5 ' /Stellar reference frame EQUINOX = 2000.00 /Equinox for RA and Dec RA_OBJ = 272.160 / J2000 RA of source, degrees DEC_OBJ = -20.410 / J2000 DEC of source, degrees TRIGTIME= 701071944.9140000 / Trigger time since MJDREF TSTART = 701071894.9794980 / Start time of spectral accumulation TSTOP = 701071994.8803159 / Stop time of spectral accumulation DATE-OBS= '2023-03-21T06:11:29.979' / Date of start of observation DATE-END= '2023-03-21T06:13:09.880' / Date of end of observation END XTENSION= 'BINTABLE' / Written by IDL: 2026-05-04T17:45:57 BITPIX = 8 / NAXIS = 2 /Binary table NAXIS1 = 10 / Number of bytes per row NAXIS2 = 128 /Number of rows PCOUNT = 0 /Random parameter count GCOUNT = 1 /Group count TFIELDS = 3 /Number of columns DATE = '2026-05-04T17:45:57' / file creation date (YYYY-MM-DDThh:mm:ss UTC) EXTNAME = 'EBOUNDS ' /Name of this binary table extension ORIGIN = 'GIOC ' /Name of organization making file TELESCOP= 'GLAST ' /mission/satellite name INSTRUME= 'GBM ' /instrument/detector name OBSERVER= 'Meegan ' /Name of instrument PI DETNAM = 'NAI_08 ' / Specific detector name MJDREFI = 51910.0 /Reference epoch MJD date, integer part MJDREFF = 7.428703703703703E-04 /Reference epoch MJD, fractional part TIMESYS = 'TT ' /Time system used in time keywords TIMEUNIT= 's ' /Time unit used in TSTART, TSTOP and TRIGTIME OBJECT = 'SGR 1806-20' / Object name RADECSYS= 'FK5 ' /Stellar reference frame EQUINOX = 2000.00 /Equinox for RA and Dec RA_OBJ = 272.160 / J2000 RA of source, degrees DEC_OBJ = -20.410 / J2000 DEC of source, degrees TRIGTIME= 701071944.9140000 / Trigger time since MJDREF TSTART = 701071894.9794980 / Start time of spectral accumulation TSTOP = 701071994.8803159 / Stop time of spectral accumulation FILTER = 'none ' /Instrument filter in use (if any) CHANTYPE= 'PHA ' /channel type (PHA, PI etc.) DETCHANS= 128 /total number possible channels HDUCLASS= 'OGIP ' /format conforms to OGIP standard HDUCLAS1= 'RESPONSE' /PHA dataset (OGIP-92-007) HDUCLAS2= 'EBOUNDS ' / HDUVERS = '1.2.0 ' /Format version number EXTVER = 1 /FITS format template version TFORM1 = 'I ' /Integer*2 (short integer) TTYPE1 = 'CHANNEL ' / Pulse Height Analyzer (PHA) Channel TLMIN1 = 0 /Channel numbers are non-negative TLMAX1 = 127 /Greater than the number of channels TFORM2 = 'E ' /Real*4 (floating point) TUNIT2 = 'keV ' / TTYPE2 = 'E_MIN ' / Lower edge of energy loss threshold TLMIN2 = 4.85320 / Energies are non-negative TLMAX2 = 976.262 / Largest possible energy TFORM3 = 'E ' /Real*4 (floating point) TUNIT3 = 'keV ' / TTYPE3 = 'E_MAX ' / Upper edge of energy loss threshold TLMIN3 = 5.79430 / Energies are non-negative TLMAX3 = 2000.00 / Largest possible energy DATE-OBS= '2023-03-21T06:11:29.979' / Date of start of observation DATE-END= '2023-03-21T06:13:09.880' / Date of end of observation END @›Mi@¹jì@¹jì@×~@×~@ôc]@ôc]A¸dA¸dA*ÿA*ÿA%–A%–A4]A4]AErkAErkAW Ù AW ÙAhîs AhîsA{", A{",A†Ñ A†ÑA�1à A�1ÃA™®A™®A¤ÛbA¤ÛbA°+]A°+]A»²^A»²^AÇ…áAÇ…áAÓ»aAÓ»aAàhYAàhYAï’¹Aï’¹Aÿ•BAÿ•BBð,Bð,B áÞB áÞB©ÒB©ÒBI.BI.B!VB!VB'âÕB'âÕB.Ú5B.Ú5B6¶ªB6¶ªB>±¼B>±¼BFÉm BFÉmBNû¼!BNû¼BX:"BX:BaW×#BaW×Bj«ê$Bj«êBtÈ%BtÈB~pu&B~puB„o9'B„o9B‰®%(B‰®%B�cë)B�cëB•Ä*B•ÄBšÜ~+BšÜ~B¡ ù,B¡ ùB§9¦-B§9¦B­d³.B­d³B³þ/B³þBº•N0Bº•NBÁ*ï1BÁ*ïBÈ/±2BÈ/±BÏ3¼3BÏ3¼BÖ7¥4BÖ7¥BݬO5BݬOBå"/6Bå"/Bí €7Bí €BôõÊ8BôõÊBýU‹9BýU‹CÜ¥:CÜ¥CI,;CI,C ·âCÔÉCƒ*?Cƒ*Cm@CmC#’öAC#’öC(»�BC(»�C. ~CC. ~C3ˆ_DC3ˆ_C9-EC9-C>ÔÐFC>ÔÐCD¹ÐGCD¹ÐCJÜbHCJÜbCQ‚ICQ‚CWf¦JCWf¦C^ ,KC^ ,Cd¯©LCd¯©Ck”ýMCk”ýCr¹„NCr¹„Cz�OCz�C€Ã'PC€Ã'C„—ƒQC„—ƒCˆŒRCˆŒCŒ ÿSCŒ ÿC�¸…TC�¸…C”ð£UC”ð£C™I‡VC™I‡C�Ã_WC�Ã_C¢^WXC¢^WC§›YC§›C«øXZC«øXC°÷·[C°÷·C¶ä\C¶äC»\]C»\CÀÁC^CÀÁCCÆHÂ_CÆHÂCËò¦`CËò¦CÑ¿aCÑ¿C×Í/bC×Í/CÝþ8cCÝþ8CäRGdCäRGCêÉseCêÉsCñcÓfCñcÓCø@ágCø@áCÿAehCÿAeD2µiD2µDæKjDæKD «µkD «µD’ÑlD’ÑD‹ÊmD‹ÊD¦‰nD¦‰DÓoDÓD!}pD!}D#‘¢qD#‘¢D(€rD(€D,· sD,· D1|0tD1|0D6bÚuD6bÚD;jævD;jæD@„wD@„DE¾:xDE¾:DK2yDK2DP”³zDP”³DV0o{DV0oD[ü-|D[ü-Daçc}DaçcDjÕô~DjÕôDt¿Dt¿DúXTENSION= 'BINTABLE' / Written by IDL: 2026-05-04T17:45:57 BITPIX = 8 / NAXIS = 2 /Binary table NAXIS1 = 12 / Number of bytes per row NAXIS2 = 128 /Number of rows PCOUNT = 0 /Random parameter count GCOUNT = 1 /Group count TFIELDS = 2 / Number of columns DATE = '2026-05-04T17:45:57' / file creation date (YYYY-MM-DDThh:mm:ss UTC) EXTNAME = 'SPECTRUM' /Name of this binary table extension ORIGIN = 'GIOC ' /Name of organization making file TELESCOP= 'GLAST ' /mission/satellite name INSTRUME= 'GBM ' /instrument/detector name OBSERVER= 'Meegan ' /Name of instrument PI DETNAM = 'NAI_08 ' / Specific detector name FILTER = 'none ' /Instrument filter in use (if any) EXPOSURE= 97.77600000 / exposure time (in seconds) BACKFILE= 'none ' /associated background filename BACKSCAL= 1.00000 /background file scaling factor CORRFILE= 'none ' /associated correction filename CORRSCAL= 1.00000 /correction file scaling factor RESPFILE= 'none ' /associated redistribution matrix filename ANCRFILE= 'none ' /associated ancilary response filename AREASCAL= 1.00000 /Effective area scaling factor POISSERR= T / Whether poisson errors are applicable SYS_ERR = 0 /no systematic error specified QUALITY = 0 /no systematic error specified GROUPING= 0 /Grouping flag HDUCLASS= 'OGIP ' /format conforms to OGIP standard HDUCLAS1= 'SPECTRUM' /PHA dataset (OGIP-92-007) HDUCLAS2= 'NET ' /Bkgd-subtracted PHA Spectrum HDUCLAS3= 'RATE ' /PHA data stored in count/s HDUCLAS4= 'TYPEI ' /Single PHA dataset HDUVERS = '1.2.0 ' /Format version number HDUVERS1= '1.1.0 ' /Version of format (OGIP memo OGIP-92-007a) CHANTYPE= 'PHA ' /channel type (PHA, PI etc.) DETCHANS= 128 /total number possible channels OBJECT = 'SGR 1806-20' / Object name RADECSYS= 'FK5 ' /Stellar reference frame EQUINOX = 2000.00 /Equinox for RA and Dec RA_OBJ = 272.160 / J2000 RA of source, degrees DEC_OBJ = -20.410 / J2000 DEC of source, degrees TRIGTIME= 701071944.9140000 / Trigger time since MJDREF TSTART = 701071894.9794980 / Start time of spectral accumulation TSTOP = 701071994.8803159 / Stop time of spectral accumulation MJDREFI = 51910.0 / Reference epoch MJD date, integer part MJDREFF = 7.428703703703703E-04 / Reference epoch MJD, fractional part TIMESYS = 'TT ' /Time system used in time keywords TIMEUNIT= 's ' /Time unit used in TSTART, TSTOP and TRIGTIME EXTVER = 1 /FITS format template version TFORM1 = 'J ' / Integer*2 (short integer) TTYPE1 = 'CHANNEL ' / Pulse Height Analyzer (PHA) Channel TLMIN1 = 0 /Channel numbers are non-negative TLMAX1 = 127 /Greater than the number of channels TFORM2 = 'D ' / Real*4 (floating point) TUNIT2 = 'count/s ' / TTYPE2 = 'RATE ' / Counts per second per channel DATE-OBS= '2023-03-21T06:11:29.979' / Date of start of observation DATE-END= '2023-03-21T06:13:09.880' / Date of end of observation END @9Ði@@B’´`@Gb”à@P®ü @R³À @QKm @P;!@ @P{î` @M‰r` @L¨€@M}ª @GíY@Gs™ @D€= @Bôã`@AW5@@Buç€@A.  @> @8| €@3�À@2€ @03F€@+Ü @+ñÀ@+’¿ @)| À@&î @'2à!@)Õ¥À"@'ö@#@%¾[ $@&AD`%@&Φà&@(\Ÿ`'@'ºJà(@(G­@)@$ZFÀ*@ ¦z@+@ Ð^€,@+0À-@,].@• /@L€0@¬W 1@àµ2@X� 3@À€4@K½€5@Éj@6@ ç 7@@ 8@€9@áÖ€:@€ ;@Ž<@Ú@=@¬Là>@àª@?@rà@@Ö1 A@T`B@®°@C@ ³V D@Åå€E@Ú× F@=¿ G@=¿ HIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~XTENSION= 'BINTABLE' / Written by IDL: 2026-05-04T17:45:57 BITPIX = 8 / NAXIS = 2 /Binary table NAXIS1 = 16 / Number of bytes per row NAXIS2 = 1 /Number of rows PCOUNT = 0 /Random parameter count GCOUNT = 1 /Group count TFIELDS = 2 /Number of columns DATE = '2026-05-04T17:45:57' / file creation date (YYYY-MM-DDThh:mm:ss UTC) EXTNAME = 'GTI ' /Name of this binary table extension ORIGIN = 'GIOC ' /Name of organization making file TELESCOP= 'GLAST ' /mission/satellite name INSTRUME= 'GBM ' /instrument/detector name OBSERVER= 'Meegan ' /Name of instrument PI DETNAM = 'NAI_08 ' / Specific detector name HDUCLASS= 'OGIP ' /format conforms to OGIP standard HDUCLAS1= 'GTI ' /PHA dataset (OGIP-92-007) HDUVERS = '1.2.0 ' /Format version number EXPOSURE= 97.77600000 / exposure time (in seconds) OBJECT = 'SGR 1806-20' / Object name RADECSYS= 'FK5 ' /Stellar reference frame EQUINOX = 2000.00 /Equinox for RA and Dec RA_OBJ = 272.160 / J2000 RA of source, degrees DEC_OBJ = -20.410 / J2000 DEC of source, degrees TRIGTIME= 701071944.9140000 / Trigger time since MJDREF TSTART = 701071894.9794980 / Start time of spectral accumulation TSTOP = 701071994.8803159 / Stop time of spectral accumulation MJDREFI = 51910.0 /Reference epoch MJD date, integer part MJDREFF = 7.428703703703703E-04 /Reference epoch MJD, fractional part TIMESYS = 'TT ' /Time system used in time keywords TIMEUNIT= 's ' /Time unit used in TSTART, TSTOP and TRIGTIME EXTVER = 1 /FITS format template version TFORM1 = 'D ' /Real*4 (floating point) TUNIT1 = 's ' / TTYPE1 = 'START ' / Beginning time of accumulation TZERO1 = 7.01071895E+08 / Start time of spectral accumulation TFORM2 = 'D ' /Real*4 (floating point) TUNIT2 = 's ' / TTYPE2 = 'STOP ' / Ending time of accumulation TZERO2 = 7.01071995E+08 / Stop time of spectral accumulation DATE-OBS= '2023-03-21T06:11:29.979' / Date of start of observation DATE-END= '2023-03-21T06:13:09.880' / Date of end of observation END ÀH÷�Ã@Hû°=