SIMPLE = T / file does conform to FITS standard BITPIX = -32 / number of bits per data pixel NAXIS = 1 / number of data axes NAXIS1 = 1024 / length of data axis 1 EXTEND = T / FITS dataset may contain extensions COMMENT FITS (Flexible Image Transport System) format is defined in 'AstronomyCOMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H OBJECT = 'u20060809_00126_wce'/ Title of the dataset DATE = '2007-05-08T20:58:13'/ file creation date (YYYY-MM-DDThh:mm:ss UT) ORIGIN = 'Starlink Project, U.K.'/ Origin of this FITS file BSCALE = 1.0 / True_value = BSCALE * FITS_value + BZERO BZERO = 0.0 / True_value = BSCALE * FITS_value + BZERO HDUCLAS1= 'NDF ' / Starlink NDF (hierarchical n-dim format) HDUCLAS2= 'DATA ' / Array component subclass HDSTYPE = 'NDF ' / HDS data type of the component Identification: TELESCOP= 'UKIRT ' / Telescope name INSTRUME= 'UIST ' / Instrument DHSVER = 'UKDHS 2002 Mar 15 ' / Data handling version HDTFILE = 'uist_spec.hdt ' / Name of hdt file OBSERVER= 'nobody ' / Observers names USERID = 'nobody ' / Userid logged in as OBSREF = '00 ' / PATT or other reference PROJECT = 'U/06B/35' / Time-allocation code MSBID = '4365b70f2101340d6eedf66acfa98adaA'/ Id min.-schedulable block eStar headers: RMTAGENT= ' ' / Name of remote agent AGENTID = ' ' / Unique identifier for remote agent Data Reduction: RECIPE = 'STANDARD_STAR' / Data reduction recipe to be used OBSNUM = 126 / Observation number GRPNUM = 125 / Group number applied to all members GRPMEM = T / Group membership STANDARD= T / Is the target a standard star observation? NOFFSETS= 4 / Number of offset positions in a pattern OBSTYPE = 'OBJECT ' / Type (BIAS|DARK|ARC|FLAT|OBJECT|SKY) Astrometric and time information: UTDATE = '20060809' / UT date as integer in yyyymmdd format DATE-END= '2006-08-09T08:02:45'/ Date and time (UTC) of end of observation CTYPE1 = 'Wavelength' / Type of co-ordinate on axis 1 COMMENT The wavelength axis is only the linear approximation. CRVAL1 = 3.230220079 / Value at ref. pixel on axis 1 CUNIT1 = 'Microns ' / Units for axis 1 CDELT1 = 0.000736660634 / Pixel size on axis 1 CRPIX1 = 512.0 / Reference pixel on axis 1 WCSNAME = 'AXIS ' / Reference name for the coord. frame RABASE = 17.4438556 / [h] Right ascension of base position DECBASE = -5.0865944 / [deg] Declination of base position TRAOFF = -6.0 / [arcsec] Telescope offset in RA TDECOFF = 0.0 / [arcsec] Telescope offset in Dec AMSTART = 1.184 / Airmass at start of observation AMEND = 1.185 / Airmass at end of observation Instrument aperture: APER_X = 8.243 / [arcsec] Aperture X axis coordinate APER_Y = 0.501 / [arcsec] Aperture Y axis coordinate ISU2 parameters: ISU2PORT= 'South ' / ISU2 port name ISU2POFF= 170 / ISU2 port offset ISU2TOFF= 20 / ISU2 tilt offset Guider: GUIDING = 'PAUSED ' / Guider status: OFF|ON|PAUSED GUIDFFOC= -1.092 / Fast guider CCD fine focus AGFREQ = 100.0 / Autoguider: Frequency FGMODE = 'Fast Guider' / Fast guider mode Chopping and nodding configuration: NOD_BEAM= 'MIDDLE ' / Chopping beam name (A|B|MIDDLE) CHPDWELL= 0.5 / [s] Chop dwell CHPDELAY= 0.1 / [s] Chop delay CHPANGLE= 0.0 / [deg] Position angle of the chop CHPTHROW= 0.0 / [arcsec] Throw of the chop wrt middle position CHOPFREQ= 0.0 / [Hz] Chop frequency Instrument detector configuration: DETECTOR= 'ALADDIN ' / Detector array used NINT = 1 / Number of integrations in observation DROWS = 1024 / [pixel] Number of detector rows DCOLUMNS= 1024 / [pixel] Number of detector columns RDOUT_X1= 1 / Start column of array readout RDOUT_X2= 1024 / Start column of array readout RDOUT_Y1= 1 / Start row of array readout RDOUT_Y2= 1024 / Start row of array readout Instrument optical configuration: CAMLENS = '0.12 ' / Camera name (0.12|0.06+IJM|0.06+HKL|pupil) INSTMODE= 'spectroscopy' / Mode (imaging|spectroscopy|ifu) PIXLSIZE= 0.1202 / [arcsec] Pixel size FILTER = 'L_spectral' / Combined filter name FILTER1 = 'open ' / Filter in wheel 1 FILTER2 = 'L_spectral' / Filter in wheel 2 GRISM = 'short_L ' / Combined grism name GRISM1 = 'short_L ' / Grism in wheel 1 GRISM2 = 'open ' / Grism in wheel 2 SLITNAME= '2_pix_wide_120' / Slit name SLITLEN = 120.0 / [arcsec] Length of slit (120|20) SLITWID = 2.0 / [pixel] Width of slit SLITANG = 0.0 / [deg] Angle of slit in wheel SLIT_PA = -90.0 / [deg] Position angle on the sky, E of N DISPAXIS= 1 / Dispersion axis RESOLUTN= 2272 / Resolution lambda/delta-lambda DISPERSN= 0.00072 / [um/pixel] Dispersion CENWAVL = 3.2722 / [um] Central wavelength FOC_MM = 1.8 / [mm] Focus position LAMP = 'off ' / Name of calibration lamp (off|BB|H|Ar|Kr) BBTEMP = 1073.0 / [K] Blackbody temperature CALAPER = 'BB_1.3mm' / [mm] Aperture for black body WPLANGLE= 0.0 / [deg] Waveplate angle POLARISE= F / Whether or not using polariser Detector controller: COMMENT An integration can consist of one or more COMMENT exposures, specified by NEXP. COMMENT Each exposure can contain one or more reads COMMENT of the array, specified by NREADS. NULL_CYC= 0 / Cycles prior to data taking NULL_EXP= 0 / Exposures prior to data taking NULL_NDR= 1 / ND reads prior to data taking WAVEFORM= 'uist_starev11' / Waveform set name ARRAY_EN= 'on ' / Array enabled/disabled PIXELMON= F / Whether pixel monitoring enabled DET_MODE= 'NDSTARE ' / Observing mode (STARE|NDSTARE|NDCHOP|CHOP) NREADS = 11 / Number of reads per exposure EXP_TIME= 10.0 / [s] Integration time per exposure NEXP = 3 / Number of exposures in integration READINT = 1.0 / [s] Interval between reads DET_NRST= 1 / No of det resets before 1st exp DET_RSTD= 0.11 / [s] Interval between final reset & 1st read MULTIRDS= 6 / No of samples/pixel GAIN = 15.0 / [electrons/ADU] Detector gain Environment: AIRTEMP = 5.252 / [degC] Air temperature BARPRESS= 616.459 / [mbar] Ambient pressure DEWPOINT= -9.501 / [degC] Dewpoint DOMETEMP= 3.376 / [degC] Dome temperature HUMIDITY= 33.712 / Relative Humidity MIRR_NE = 7.098 / [degC] Mirror temperature NE MIRR_NW = 6.025 / [degC] Mirror temperature NW MIRR_SE = 5.139 / [degC] Mirror temperature SE MIRR_SW = 4.306 / [degC] Mirror temperature SW MIRRBTNW= 8.443 / [degC] Mirror bottom temp. SW MIRRTPNW= 7.144 / [degC] Mirror top temp. SW SECONDAR= 4.013 / [degC] Temperature of secondary TOPAIRNW= 4.027 / [degC] Top air NW TRUSSENE= 5.058 / [degC] Truss leg ENE TRUSSWSW= 2.701 / [degC] Truss leg WSW WIND_DIR= 205.055 / [deg] Wind direction, azimuth WIND_SPD= 0.295 / [km/h] Wind speed CSOTAU = 0.154 / Tau at 225 GHz from CSO TAUDATE = '2006-08-09T07:50' / Time and date of Tau reading TAUSRC = 'CSO225GHZ' / Source of opacity data Image quality related parameters: IZ5 = 1724.0 / Astigmatism: IZ5 HZ5SH = -620.0 / Astigmatism: HZ5SH HZ5CH = 334.0 / Astigmatism: HZ5CH HZ5SD = -1676.0 / Astigmatism: HZ5SD HZ5CD = 0.0 / Astigmatism: HZ5CD IZ6 = 252.0 / Astigmatism: IZ6 HZ6SH = -1014.0 / Astigmatism: HZ6SH HZ6CH = -412.0 / Astigmatism: HZ6CH HZ6SD = -214.0 / Astigmatism: HZ6SD HZ6CD = -374.0 / Astigmatism: HZ6CD Z7 = -519.0 / Coma: Z7 Z8 = 1210.0 / Coma: Z8 WEBEAM = -519.0 / Topend: W-E beam NSBEAM = 45.0 / Topend: N-S beam IZ9 = -324.0 / Trefoil: IZ9 HZ9SH = 45.0 / Trefoil: HZ9SH HZ9CH = -105.0 / Trefoil: HZ9CH HZ9SD = 179.0 / Trefoil: HZ9SD HZ9CD = 0.0 / Trefoil: HZ9CD IZ10 = 191.0 / Trefoil: IZ10 HZ10SH = 156.0 / Trefoil: HZ10SH HZ10CH = -130.0 / Trefoil: HZ10CH HZ10SD = -77.0 / Trefoil: HZ10SD HZ10CD = 192.0 / Trefoil: HZ10CD Z11 = 300.0 / Spherical: Z11 AAMP = 2135.069 / Astigmatism: amplitude APHI = -11.695 / Astigmatism: angle TAMP = 530.904 / Trefoil: Amplitude TPHI = 47.518 / Trefoil: angle Engineering: CNFINDEX= 5280103 / Configuration index DET_TEMP= 30.0 / [K] Array temperature WFPERIOD= 1560.0 / [nSec] Waveform state period VDETCOM = -3.4 / [V] Bias voltage: vdetcom VDDUC = -4.0 / [V] Bias voltage: vdduc VNROW = -6.0 / [V] Bias voltage: vnrow VNCOL = -6.0 / [V] Bias voltage: vncol VSSCM = 0.0 / [V] Bias voltage: vsscm VDDOUT = -1.5 / [V] Bias voltage: vddout VREF = -2.5 / [V] Bias voltage: vref VLOAD = 0.0 / [V] Bias voltage: vload BIAS8 = 0.0 / [V] Bias voltage: bias8 BIAS9 = 0.0 / [V] Bias voltage: bias9 BIAS10 = 0.0 / [V] Bias voltage: bias10 BIAS11 = 0.0 / [V] Bias voltage: bias11 BIAS12 = 0.0 / [V] Bias voltage: bias12 BIAS13 = 0.0 / [V] Bias voltage: bias13 VDDCL = -3.8 / [V] Bias voltage: vddcl VROWOFF = 0.0 / [V] Bias voltage: vrowoff VGGCLLO = 0.0 / [V] Bias voltage: vggcl_low VGGCLHI = 0.0 / [V] Bias voltage: vggcl_hi VROWONLO= -6.0 / [V] Bias voltage: vrowon_low VROWONHI= -6.0 / [V] Bias voltage: vrowon_hi VRSTONLO= 0.0 / [V] Bias voltage: vrstoff_low VRSTONHI= 0.0 / [V] Bias voltage: vrstoff_hi VRSTOFFL= -6.0 / [V] Bias voltage: vrstoff_low VRSTOFFH= 0.0 / [V] Bias voltage: vrstoff_hi UTSTART = 7.957222 / [h] Start time of integration UTEND = 7.966944 / [h] End time of integration DET_NRST= 1 / Detector resets before first exposure DET_RSTD= 0.11 / [s] Interval between final reset & first read MULTIRDS= 6 / Number of samples/pixel END BBBBBBBBBBBBBBBBBBCDC(CֈCɩCHCCtCޢ"CSCCfCC<CCDCCrvCCXCC"C)CCMjCRCBCFCPC/CҐC CTCaCCʘCɺ/C%CCKDCWCxCCȂCCz,CޒCCCC=2C4cCݜCۙCj&C؏CR/CxCׇCHC9C Cŀ}CCCCC,CCѼC C"NCfC_CCȕCC%C᪹CkC9vC5}CשCЕlC C@CJ%CCƘjC0Ce C#CYCZPC~C|RC\CyCjC 4C`Cә7CJCCCʞClCsCurC?C-CC۹CCsZCCCCLKCWCI CCCؕHCZCѴCʹ;CnCJCCCɸC{LCVCٳCC›eCŽtCȐPCͷCZC Cb C%CoCCCdCrCC‪Cr$CCCCC6C߃ CCkCsChUCC`C"CÒC^CÓCȒCCC+OCYCĔHCٖCC*C"CNMCmCٱLCߑC8Cb^CC̡+CǕCɮCǢ}CϾC̦CkoCⰀC8CRCCײCѷ&CCǂC!C7CŏCɜC(CƒCCCڤC>CCyC1/CC@xCgCߏUCCmhCƎxC5CvCCPCɛ*C9CCLCbC޹CbtCwvCӔKC}CCCCF6CCI6CC}C[&C̰CJC-eCCCهC֟tCݺCC&CzCC執CCCCVCCCCӥXC&C˂rCĽCݩCCzCܓLC&CCC׻Ck%CC?4C'CCAiCCzC,CCLCCŒCC\CICǸC CCC7C CcCCNC CCc C5CsC]$C]"CCꕨCjCݯC CZC C/CڋCƔCŢCvCۦ CCtC拔CxC:C\ C^CқC~CCӗCCfCCtC8C CCCCNCpCqtCC!CCC``C˅{CCYCC=lĊC C_(CLCwC5CkCsfC#XCCvCwCp]C PCCCC$HC[CCC6CKCAC#CVCeGCPCEC}C4CCBCCaChCXC CrCҼCCJCC CC{CxbCsCtOClCCuTCoLCrZCj5Cm2CcCf-~CqjCvfCClC/C92C|C{CpCkCnVDCly`CjCvMCCXCWXC\`CCNC`jC`CKC CCCJCVCajCeCNCCC CgCJCfCٙCCTC8CC(C%(C4CC̠CCCmC CCCcCNCCCCRCMCICfCyCCֹCE4CgCtGCkCICdCjCXCVC[CYZCfC{'C1CfC//C$CwCC.CCB%C#dCH]CoCҿCCpPCh CCd#_CMCICFC@8C> CDCLCCUFCaC,C|.CCjC+CCUCCCnDCuoCyC8KC@ChCIC(C]TCC8BCwC[CILCHNCQCCWtCnQCCrCv7CCaCHCCAC9C7EC5%C0C4˫C.VVC2tC<^CGHCWCYJC]CnCCCFCgC(CC6Cɮ^C%CCCCnCl.CCOCCrjC\CpnCyuC CuCk'C|C C,CeCۂCe C'FCPCҰ(CgC}ICC>PCC{C?CyCqKCp4CdhClC ]C CHC!C&CWJ0CCC6CC9CEC`C'CYrC˜C}jCưCy[XCe!,CYEjCnlCCGCްC$CbsCG%_CA7CNCU|CL$CFCSGXCjXC7C0CCCNCCaCY 9CnC5CzC6C2C_CELCAƹCMdCr+CCCCvCCCoCІCCZCCC C$CBCCkC=C_CjC!C%C BCC C}CCC JCYCiCC` CCC CyCSC ~@C vC C C !QC C C -CèC(CTC6CeRCJC8*CC 5C hC C GC CCC\C rC ISC yJC moC C XC*CHC*CC"C9CC C[CEVCߡCQC C };C IC S^C CcCCbCCxC 0C YqCCCoCjCC =C*CCCCݴCLC$CA6CKC~C)7CC 2C#C7 CC C C PCWCtCLgC .C 4C%CC;CMC CCBCCCC "C rC[CACC#UCC&C 4VC CCqC C}C CWC(CpCoBQ4B,CCCB B.B`C8B{BѩBtBwB]BBmBBbBB>B8B֊"B: BBuBԭBιB˰B3BY!Bˋ|B#B1`BBƻxBW9BՂEBܭ XTENSION= 'IMAGE ' / IMAGE extension BITPIX = -32 / number of bits per data pixel NAXIS = 1 / number of data axes NAXIS1 = 1024 / length of data axis 1 PCOUNT = 0 / required keyword; must = 0 GCOUNT = 1 / required keyword; must = 1 OBJECT = 'u20060809_00126_wce'/ Title of the dataset DATE = '2007-05-08T20:58:13'/ file creation date (YYYY-MM-DDThh:mm:ss UT) ORIGIN = 'Starlink Project, U.K.'/ Origin of this FITS file BSCALE = 1.0 / True_value = BSCALE * FITS_value + BZERO BZERO = 0.0 / True_value = BSCALE * FITS_value + BZERO HDUCLAS1= 'NDF ' / Starlink NDF (hierarchical n-dim format) HDUCLAS2= 'VARIANCE' / Array component subclass EXTNAME = 'VARIANCE' / Array component HDSTYPE = 'NDF ' / HDS data type of the component WCSNAME = 'AXIS ' / Reference name for the coord. frame CRPIX1 = 512.0 / Reference pixel on axis 1 CRVAL1 = 3.230220079 / Value at ref. pixel on axis 1 CTYPE1 = 'Wavelength' / Type of co-ordinate on axis 1 CDELT1 = 0.000736660634 / Pixel size on axis 1 CUNIT1 = 'Microns ' / Units for axis 1 END BB+B/BBwBfEBBBBPBT-BT}B!BXBhB?ZB?BBB@BBBEBMBBtB{0BBB mBZB5BBoBBuGBBBBB _BBуBPBUBBpBRBKPB6BzBBNB=BB2CBBB{B?BBJB4BBnBBBB BBW"BB)IB1BBBaBKBBYB,B:fB\B B#8BBB?BjB-\B$%BB&Bf0BtBBW>BPBДBG9BgBBSBBB.BrB^B NBBj$BxBcVB@BEBBVlBBͅB0BբB:DBBDBܸBgrBJBeBB&B'BvBgB-OBB7B>BvBpB*BBaB=BرB30BbB ;BCBB:BBBBuBB|RB{aBtByBzB{BwBrBNBv]BrvBr/BpBsPBkB|GBnjnBwfBq=`Bz.BmqBjVB`Bq]BaBfz B_Bo?JB`BBliHBkBi7{BdBe0BbxBfZB[UBdmnB]-B`̴BTHB_FB^zcB_BaBfBk "Ba>BhcvBcBkTBcBdXBY9BX/2BSBO2BUBW$BOBVqBOBR{BRТBSBKBWċBMBQDBEdBP'BOTBSBJBJ̺BBʒBIPBB BCXB<-B=B:`QBAB@>BDB:B< B8ZB?B9DB;B5B;B:ߴBF:CBA!AA#3A(YA33A'A/цA;HAKhAK6AUxAIkAXN`AaXAm5"A[PAJ!A;CA1hA&A*- A,A;A/"A)M2A͂A*A.^\A&A$A(jAA hAUhAokAjkA|AstApQAdٜAeKAgAb`EARRARmJAJAJwA2~A&AjA YAA]A*X_A/^A(rAA#@AcAhA A+A;AAA%A}A8A!_A;A;A0A!ptA&A A V2AAA2AgA [AA A }AA6A1d\A&An6AA sA A60A }ZASAQA6A @2A AfAjA1DA7mBA0\A%@A$^A$A&"[A$9A%A;AAA@A>AlASA,FA2A4A#*AgAǜAaAA#AA@pAMAAavA}AA(A1*RA4A(AAA AiA #A2 @@0@A AA )A*@@@TN@ۼ@+@ג@߰@,@d@3@~@K{@ @@j@D@!@̀@EV@@F@υX@@@%@T@"R@@@|@3@@6E@@c@@@@o@@<@ζ@m@m@@@@n'@Z@@4W@@@8@iR@Qp@@O@*}@ɐ@@ѧ@f@o@J@/@=@m/@e@M*@l@7@-@(@@\@@7@I@@ @%@8@@'@wp@$3@@@@[#@@i@F@@4R@@@]{@S@+@m@@@F@D@o@^@@@}H@@@8@@@ @L@@<@N@U@L@@=@_@@@+@^@@5@P_@@C@^.@~R@a@8@@r@b@n@@@@NL@Cp@7@Ј@kh@l@}҃@@yb@|@y…@|q@t[@y!v@oM@u1@t8@v@s@z@|@~2>@z@i@+X@=@s@sX@o!@t@u,@zگ@x @x@k(@h@h@k@rU@n@r @i.@j@d4@ml@k@kx2@dL@g@f@^m@\"@fk@eI@cd@S:@SF@`@U@UL@Q)@U9i@T@UHf@J@O[N@Gy@N@LA@QL