SIMPLE = T /Dummy Created by MWRFITS v1.11 BITPIX = 8 /Dummy primary header created by MWRFITS NAXIS = 0 /No data is associated with this header EXTEND = T /Extensions may (will!) be present END XTENSION= 'BINTABLE' /Binary table written by MWRFITS v1.11 BITPIX = 8 /Required value NAXIS = 2 /Required value NAXIS1 = 137 /Number of bytes per row NAXIS2 = 75 /Number of rows PCOUNT = 0 /Normally 0 (no varying arrays) GCOUNT = 1 /Required value TFIELDS = 18 /Number of columns in table COMMENT COMMENT *** End of mandatory fields *** COMMENT TFORM16 = 'D ' / TFORM17 = 'D ' / TFORM18 = 'D ' / TTYPE16 = 'CAL_MAG_ERR' / TTYPE17 = 'CAL_FLUX' / TTYPE18 = 'CAL_FLUX_ERR' / COMMENT COMMENT *** End of mandatory fields *** COMMENT EXTEND = T / File may contain extensions ORIGIN = 'NOAO-IRAF FITS Image Kernel July 2003' / FITS file originator OBJECT = 'iPTF13ddg' / Name of the object observed DATE = '2016-08-02T15:59:50' / Date FITS file was generated IRAF-TLM= '2016-08-02T15:59:04' / Time of last modification COMMENT COMMENT *** Column names *** COMMENT COMMENT COMMENT *** Column names *** COMMENT TTYPE1 = 'ID ' / TTYPE2 = 'RA ' / TTYPE3 = 'DEC ' / TTYPE4 = 'RA_WHIRC_SE' / TTYPE5 = 'DEC_WHIRC_SE' / TTYPE6 = 'X ' / TTYPE7 = 'Y ' / TTYPE8 = 'FWHM ' / TTYPE9 = 'INST_MAG' / TTYPE10 = 'INST_MAG_ERR' / TTYPE11 = 'INST_MAG_SE' / TTYPE12 = 'INST_MAG_SE_ERR' / TTYPE13 = 'FLUX ' / TTYPE14 = 'FLUX_ERR' / TTYPE15 = 'CAL_MAG ' / COMMENT COMMENT *** Column formats *** COMMENT COMMENT COMMENT *** Column formats *** COMMENT TFORM1 = '21A ' / TFORM2 = 'D ' / TFORM3 = 'D ' / TFORM4 = 'D ' / TFORM5 = 'E ' / TFORM6 = 'E ' / TFORM7 = 'E ' / TFORM8 = 'D ' / TFORM9 = 'D ' / TFORM10 = 'D ' / TFORM11 = 'E ' / TFORM12 = 'E ' / TFORM13 = 'D ' / TFORM14 = 'D ' / TFORM15 = 'D ' / COMMENT FITS (Flexible Image Transport System) format defined in Astronomy andCOMMENT = '----------------- ' / COMMENT Contact the NASA Science Office of Standards and Technology for the COMMENT FITS Definition document #100 and other FITS information. CREATOR = 'Linux generic CCD control' / Data-taking program OBSERVAT= 'KPNO ' / Originating Observatory TELESCOP= 'WIYN ' / Specific system LATITUDE= '31:57:11.78' / [deg] Observatory Latitude LONGITUD= '07:26:27.97' / [deg west] Observatory Longtiude INSTRUME= 'WHIRC ' / Instrument DETECTOR= 'VIRGO1 ' / CCD Detector ID INSTID = 'whirc ' / Instrument ID Code OBSERVER= 'Weyant ' / Observer(s) IMGTYPE = 'object ' / Image type code EXPTIME = 6.0000000000000E+01 / Exposure time in secs TIMESYS = 'UTC ' / Time System is UTC DATE-OBS= '2013-10-16T04:29:49.0' / UTC epoch TIME-OBS= '21:29:49' / Time of start of observation MJD-OBS = 56581.188171 / MJD at start of obs JD = 2456581.68817 / Julian Date at start of obs CCDTEMP = 0.0 / [C] CCD temperature at readout CCDXBIN = 1 / Column Binning on detector CCDYBIN = 1 / Row Binning on detector HDR_REV = '2.00 20-Jun-2006 ' / Header-Rev LSTHDR = '22:44:01.25710296 ' / local sidereal time ELMAP = '63:40:15.07266516 ' / mapper elevation AZMAP = '81:47:03.83662248001' / mapper azimuth TRACK = 'Tracking ' / tracking COORDS = 'Helio. mean FK5 ' / coordinate system TARGRA = '00:47:50.83 ' / Telescope target RA TARGDEC = '31:49:17.41 ' / Telescope target DEC RA = '+00:47:48.602 ' / Telescope RA DEC = '+31:48:47.894 ' / Telescope DEC RAOFFST = '23:59:57.64 ' / Telescope RA offset DECOFFST= '-00:00:29.90 ' / Telescope DEC offset PV2_1 = 0.0000000000000E+00 / Projection parameter 1 CRPIX2 = 1649.52471119451 / Reference Pixel in Y CD1_1 = -2.4248327171116E-8 / Degrees / Pixel CRVAL1 = 11.95253445414486 / R.A. (degrees) of reference pixel EQUINOX = 2000. / Equinox CD2_1 = -2.6895824906852E-5 / Degrees / Pixel CD1_2 = -2.7875592680877E-5 / Degrees / Pixel LONPOLE = 1.8000000000000E+02 / Native Longitude of Celestial Plane CRVAL2 = 31.81274508889999 / Declination of reference pixel CD2_2 = 3.74982510729661E-8 / Degrees / Pixel LATPOLE = 0.0000000000000E+00 / Celestial Latitude of native pole HISTORY = 'Jan-18-2008-19:51:53' /WCS parameters updated CTYPE1 = 'RA---TAN ' / Coordinate Type CRPIX1 = 1683.01610395927 / Reference Pixel in X CTYPE2 = 'DEC--TAN ' / Coordinate Type ZD = '26:20:01.5765468 ' / zenith distance AIRMASS = 1.1155410000000E+00 / airmass at start of exposure ROTANGLE= '-342:11:10.55 ' / MNIR rotator angle, degrees CW from N ROTOFF = '00:00:00.00 ' / MNIR rotator angle offset FOCUS = 7.3244375000000E+03 / Telescope focus (microns) FILTER1 = 'H ' / WHIRC filter 1 name FILTER2 = 'OPEN ' / WHIRC filter 2 name ROTPORT = 'mnir ' / Tertiary fold position FOLDPOS = 'mnir ' / Tertiary port selection UTSHUT = '21:29:49 ' / UT of shutter close IMAGETYP= 'object ' / Type of picture (object, dark, etc.) RECID = 'whirc.131016.043058' / archive ID for observation DATATYP = '+32.0000000000000000' FINPXL = '+4.0000000000000000' RAWPXL = '+4.0000000000000000' OUTPUTS = '+16.0000000000000000' IMGCOLS = '+2144.0000000000000000' IMGROWS = '+2050.0000000000000000' PXLCOLS = '+2144.0000000000000000' PXLROWS = '+2050.0000000000000000' REFCOLS = '+0.0000000000000000' ARRTYPE = ' ' ARRID = ' ' NIMGS = '+237.0000000000000000' IMGFILE = 'obj ' IMGDIR = '/data2 ' EXPID = '+0.0000000000000000' / Exposure identifier EXPVECT = '+65.0000000000000000' / Exposure vector EXPMODE = '+2.0000000000000000' / Exposure mode LABSYS = '+2.0000000000000000' / Lab system PROCMOD = '+0.0000000000000000' / Processing mode CAPTMOD = '+0.0000000000000000' / Capture mode FRAMES = '+2.0000000000000000' / Total frames CTCPERD = '+70.0000000000000000' / CTC Period FRMSPRD = '+2.0000000000000000' / Frames Per Read Out DIGAVGS = '+4.0000000000000000' / Digital Averages COADDS = '+1.0000000000000000' FOWLER = '+1.0000000000000000' / Fowler Samples VPUC = '+3.5000000000000000' / Bias voltage vpUc VNUC = '+0.9608793767852849' / Bias voltage vnUc VNOUT = '+2.4566429576475692' / Bias voltage vnOut IIDLE = '-2.2562459625318563' / Bias *voltage* iIdle ISLEW = '-3.1261956099547903' / Bias *voltage* iSlew VCAS = '+2.9827915987522484' / Bias voltage vCas VHIROWEN= '+4.9518668343082055' / Bias voltage vHiRowEn VPD = '+3.9511898563252648' / Bias voltage vpD VLORESET= '-0.0369725380377571' / Bias voltage vloReset VLOROWEN= '+0.9660505152264128' / Bias voltage vlowRowEn VDETCOM = '+0.9705882352941176' / Bias voltage vdetCom VRSTUC = '+0.2647058823529412' / Bias voltage vrstUc IDPFNAME= 'whirc_DefaultIdp.mod' IDPFDIR = '/Monsoon/cfg/_whirc' EXPFNAME= 'whirc_power_off.mod' EXPFDIR = '/Monsoon/cfg/_whirc' MODEFILE= 'whirc_DefaultSetup.mod' MODEDIR = '/Monsoon/cfg/_whirc' ARRFILE = '.whirc_power_on.mod' ARRDIR = '/Monsoon/cfg/_whirc' MCBPIX = '+65535.0000000000000000' MCBMSG = '+65535.0000000000000000' MCBCNTRL= '+1.0000000000000000' MCBSTAT = '+5537.0000000000000000' MCBCLOCK= '+63.0000000000000000' ACQSTAT = '+0.0000000000000000' ACQMODE = '+0.0000000000000000' ACQPRIOR= '+0.0000000000000000' ACQDIGAV= '+32.0000000000000000' ACQCNTRL= '+34.0000000000000000' ACQSEL0 = '+15.0000000000000000' ACQSEL1 = '+14.0000000000000000' ACQSEL2 = '+13.0000000000000000' ACQSEL3 = '+12.0000000000000000' ACQSEL4 = '+11.0000000000000000' ACQSEL5 = '+10.0000000000000000' ACQSEL6 = '+9.0000000000000000' ACQSEL7 = '+8.0000000000000000' ACQSEL8 = '+7.0000000000000000' ACQSEL9 = '+6.0000000000000000' ACQSEL10= '+5.0000000000000000' ACQSEL11= '+4.0000000000000000' ACQSEL12= '+3.0000000000000000' ACQSEL13= '+2.0000000000000000' ACQSEL14= '+1.0000000000000000' ACQSEL15= '+0.0000000000000000' IIDLEI = '+4078.0000000000000000' ISLEWI = '+4066.0000000000000000' VCASI = '+8.0000000000000000' VUNKWNI = '+4089.0000000000000000' VHIROWI = '+17.0000000000000000' VHIRSTI = '+12.0000000000000000' VPDI = '+41.0000000000000000' VLORSTI = '+4083.0000000000000000' VLOROWI = '+4094.0000000000000000' VNOUTI = '+3762.0000000000000000' VNUCI = '+4045.0000000000000000' VDETCOMI= '+4095.0000000000000000' VRSTUCI = '+4091.0000000000000000' VPUCI = '+73.0000000000000000' IIDLETV = '-2.2696940774844885' ISLEWTV = '-3.1182105488125993' VCASTV = '+2.9907120889290502' VUNKNWNV= '-0.0455194731373613' VHIROWV = '+4.9701694980676470' VHIRSTV = '+3.9759466638887444' VPDTV = '+3.9495825340923210' VLORSTTV= '-0.0369838229293072' VLOROWTV= '+0.9677832049142353' VNOUTTV = '+2.4970451176140429' VNUCTV = '+0.9638333997428384' VDETCMTV= '+0.9920672638705507' VRSTUCTV= '+0.2709134353512144' VPUCTV = '+3.4840543824207018' F1SWERR = 'ok ' / WHIRC filter 1 software error status F1STAT = 'ok ' / WHIRC filter 1 max-410 motor controller status F1STEPS = '-967 ' / WHIRC filter 1 wheel angle motor steps F1ANGLE = '-45 ' / WHIRC filter 1 wheel angle degrees F1GAUSS = '-259.8 ' / WHIRC filter 1 magfield gauss reading G F1DETENT= 'NONE ' / WHIRC filter 1 magfield position: HOME, OTHER, F1LAMBDA= '1.64 ' / WHIRC filter 1 wavelength (microns) F1DLL = '0.18 ' / WHIRC filter 1 d-lambda / lambda F1FWHM = '0.29 ' / WHIRC filter 1 full width half max (microns) F2SWERR = 'ok ' / WHIRC filter 2 software error status F2STAT = 'ok ' / WHIRC filter 2 max-410 motor controller status F2STEPS = '0 ' / WHIRC filter 2 wheel angle motor steps F2ANGLE = '0 ' / WHIRC filter 2 wheel angle degrees F2GAUSS = '1319.7 ' / WHIRC filter 2 magfield gauss reading G F2DETENT= 'HOME ' / WHIRC filter 2 magfield position: HOME, OTHER, F2LAMBDA= '1.5 ' / WHIRC filter 2 wavelength (microns) F2DLL = '1000.0 ' / WHIRC filter 2 d-lambda / lambda F2FWHM = '1000.0 ' / WHIRC filter 2 full width half max (microns) TVIRGO = '0074.723 ' / WHIRC temperature VIRGO, K TDETECT = '0078.500 ' / WHIRC temperature alt-VIRGO, K TCAMERA = '0076.182 ' / WHIRC temperature camera K TMOTRPLT= '0076.403 ' / WHIRC temperature filter-wheel-plate K TCLDPLT = '0076.274 ' / WHIRC temperature cold-plate K TOBENCH = '0076.457 ' / WHIRC temperature optical-bench K TRDSHLD = '0085.934 ' / WHIRC temperature rad-shield K TCLLMAT = '0505.000 ' / WHIRC temperature collimating K TEMPF1 = '0076.645 ' / WHIRC temperature filter wheel 1 K TEMPF2 = '0076.462 ' / WHIRC temperature filter wheel 2 K TMSTATE = 'STABLE ' / WHIRC temperature controller state TMSWERR = 'ok ' / WHIRC temp control s/w error TMSETPT = '0078.500 ' / WHIRC temperature setpoint K TMCRATE = '0002.000 ' / WHIRC temperature ramp rate K/min TMTOLER = '0001.000 ' / WHIRC temperature tolerance K TMPERROR= '0000.000 ' / WHIRC temperature vs. setpoint error K TMPID_P = '0150.000 ' / WHIRC temp control PID P-coefficient TMPID_I = '0030.000 ' / WHIRC temp control PID I-coefficient TMPID_D = '0025.000 ' / WHIRC temp control PID D-coefficient TMHTRPOW= '0000.063 ' / WHIRC heater power Watts TMMAXPOW= '0062.800 ' / WHIRC heater power limit Watts TMHTRRNG= 'x1.0 ' / WHIRC heater range (power limit gain factor) TMMAXAMP= '2.0A ' / WHIRC heater current limit Amps OBSID = 'wiyn.whirc.20131016T043058' / Observation-ID PROPID = '"12B-0500" ' / observing-proposal-ID MOPSEQ = 238 / MOPINFO-sequence MOPDATE = 'Oct 15 21:30:58 ' / MOPINFO-timestamp = DTSITE = 'kp ' / observatory location DTTELESC= 'wiyn ' / telescope identifier DTINSTRU= 'whirc ' / instrument identifier DTCALDAT= '2013-10-15 ' / calendar date from observing schedule ODATEOBS= ' ' / previous DATE-OBS DTUTC = '2013-10-16T04:30:59' / post exposure UTC epoch from DTS DTOBSERV= 'NOAO ' / scheduling institution DTPROPID= '2012B-0500 ' / observing proposal ID DTPI = 'Michael Wood-Vasey' / Principal Investigator DTPIAFFL= 'University of Pittsburgh' / PI affiliation DTTITLE = 'Type Ia Supernovae in the Near-Infrared: A Three-Year Survey toward 'DTCOPYRI= 'AURA ' / copyright holder of data DTACQUIS= 'dust.kpno.noao.edu' / host name of data acquisition computer DTACCOUN= 'daemon ' / observing account name DTACQNAM= '/data/data/15_Oct_13/obj_237.fits' / file name supplied at telescopDTNSANAM= 'kp1829245.fits ' / file name in NOAO Science Archive DT_RTNAM= 'kww_131016_043059_ori' / NSA root name DTSTATUS= 'done ' / data transport status SB_HOST = 'dust.kpno.noao.edu' / iSTB client host SB_ACCOU= 'daemon ' / iSTB client user account SB_SITE = 'kp ' / iSTB host site SB_LOCAL= 'kp ' / locale of iSTB daemon SB_DIR1 = '20131015 ' / level 1 directory in NSA DS SB_DIR2 = 'wiyn ' / level 2 directory in NSA DS SB_DIR3 = '2012B-0500 ' / level 3 directory in NSA DS SB_RECNO= 1829245 / iSTB sequence number SB_ID = 'kp1829245 ' / unique iSTB identifier SB_NAME = 'kp1829245.fits ' / name assigned by iSTB SB_RTNAM= 'kww_131016_043059_ori' / NSA root name RMCOUNT = 0 / remediation counter RECNO = 1829245 / NOAO Science Archive sequence number CHECKSUM= 'OVoWRUlWOUlWOUlW' / HDU checksum updated 2017-10-25T17:23:25 DATASUM = '391167920' / data unit checksum updated 2017-10-25T17:23:25 NONLCORR= 'done ' / non-linearity correction done? X_USEAS = 'both ' X_FOROBJ= 'PTF13ddg_A' X_DITPOS= 0 BGLEVEL = 3280.268798828125 / Mean background level (counts) IBGLEVEL= 0.000304853065808890 / Inverse of mean background level (1/counts) PL_SKYF = '03.sky/sky___PTF13ddg_A__H_OPEN_DP0.fits' / Sky frame PL_FLATF= '02.flats/response__H_OPEN.fits' / Flat field frame WCSDIM = 2 LTM1_1 = 1. LTM2_2 = 1. WAT0_001= 'system=image' WAT1_001= 'wtype=tan axtype=ra' WAT2_001= 'wtype=tan axtype=dec' ALIDX = 0 / X offset applied to align to reference image ALIDXERR= 0 / X offset uncertainty ALIDY = 0 / Y offset applied to align to reference image ALIDYERR= 0 / Y offset uncertainty ALINSTAR= -1 / Number of stars used in alignment. PROCID = 'wiyn.whirc.20131016T043058V1' PROCID01= 'wiyn.whirc.20131016T043058' PROCID02= 'wiyn.whirc.20131016T043215' PROCID03= 'wiyn.whirc.20131016T043331' PROCID04= 'wiyn.whirc.20131016T043448' PROCID05= 'wiyn.whirc.20131016T043605' PROCID06= 'wiyn.whirc.20131016T043721' PROCID07= 'wiyn.whirc.20131016T043838' PROCID08= 'wiyn.whirc.20131016T043954' PROCID09= 'wiyn.whirc.20131016T044111' PROCID10= 'wiyn.whirc.20131016T044228' PROCID11= 'wiyn.whirc.20131016T044344' PROCID12= 'wiyn.whirc.20131016T044501' PROCID13= 'wiyn.whirc.20131016T044618' PROCID14= 'wiyn.whirc.20131016T044734' PROCID15= 'wiyn.whirc.20131016T044851' PROCID16= 'wiyn.whirc.20131016T045007' PROCID17= 'wiyn.whirc.20131016T045123' PROCID18= 'wiyn.whirc.20131016T045240' PROCID19= 'wiyn.whirc.20131016T045356' PROCID20= 'wiyn.whirc.20131016T045513' PROCID21= 'wiyn.whirc.20131016T045629' PROCID22= 'wiyn.whirc.20131016T045745' PROCID23= 'wiyn.whirc.20131016T045903' PROCID24= 'wiyn.whirc.20131016T050020' PROCID25= 'wiyn.whirc.20131016T050137' PROCID26= 'wiyn.whirc.20131016T050309' PROCID27= 'wiyn.whirc.20131016T050426' PROCID28= 'wiyn.whirc.20131016T050543' PROCID29= 'wiyn.whirc.20131016T050659' PROCID30= 'wiyn.whirc.20131016T050816' PROCID31= 'wiyn.whirc.20131016T050932' PROCID32= 'wiyn.whirc.20131016T051048' PROCID33= 'wiyn.whirc.20131016T051206' PROCID34= 'wiyn.whirc.20131016T051322' PROCID35= 'wiyn.whirc.20131016T051439' PROCID36= 'wiyn.whirc.20131016T051555' PROCID37= 'wiyn.whirc.20131016T051712' PROCID38= 'wiyn.whirc.20131016T051828' PROCID39= 'wiyn.whirc.20131016T051945' PROCID40= 'wiyn.whirc.20131016T052102' PROCID41= 'wiyn.whirc.20131016T052219' PROCID42= 'wiyn.whirc.20131016T052336' PROCID43= 'wiyn.whirc.20131016T052452' PROCID44= 'wiyn.whirc.20131016T052609' PROCID45= 'wiyn.whirc.20131016T052725' PROCID46= 'wiyn.whirc.20131016T052842' PROCID47= 'wiyn.whirc.20131016T052958' PROCID48= 'wiyn.whirc.20131016T053115' PROCID49= 'wiyn.whirc.20131016T053232' PROCID50= 'wiyn.whirc.20131016T053348' IMCMB001= 'obj_237.wreg.fits' IMCMB002= 'obj_238.wreg.fits' IMCMB003= 'obj_239.wreg.fits' IMCMB004= 'obj_240.wreg.fits' IMCMB005= 'obj_241.wreg.fits' IMCMB006= 'obj_242.wreg.fits' IMCMB007= 'obj_243.wreg.fits' IMCMB008= 'obj_244.wreg.fits' IMCMB009= 'obj_245.wreg.fits' IMCMB010= 'obj_246.wreg.fits' IMCMB011= 'obj_247.wreg.fits' IMCMB012= 'obj_248.wreg.fits' IMCMB013= 'obj_249.wreg.fits' IMCMB014= 'obj_250.wreg.fits' IMCMB015= 'obj_251.wreg.fits' IMCMB016= 'obj_252.wreg.fits' IMCMB017= 'obj_253.wreg.fits' IMCMB018= 'obj_254.wreg.fits' IMCMB019= 'obj_255.wreg.fits' IMCMB020= 'obj_256.wreg.fits' IMCMB021= 'obj_257.wreg.fits' IMCMB022= 'obj_258.wreg.fits' IMCMB023= 'obj_259.wreg.fits' IMCMB024= 'obj_260.wreg.fits' IMCMB025= 'obj_261.wreg.fits' IMCMB026= 'obj_262.wreg.fits' IMCMB027= 'obj_263.wreg.fits' IMCMB028= 'obj_264.wreg.fits' IMCMB029= 'obj_265.wreg.fits' IMCMB030= 'obj_266.wreg.fits' IMCMB031= 'obj_267.wreg.fits' IMCMB032= 'obj_268.wreg.fits' IMCMB033= 'obj_269.wreg.fits' IMCMB034= 'obj_270.wreg.fits' IMCMB035= 'obj_271.wreg.fits' IMCMB036= 'obj_272.wreg.fits' IMCMB037= 'obj_273.wreg.fits' IMCMB038= 'obj_274.wreg.fits' IMCMB039= 'obj_275.wreg.fits' IMCMB040= 'obj_276.wreg.fits' IMCMB041= 'obj_277.wreg.fits' IMCMB042= 'obj_278.wreg.fits' IMCMB043= 'obj_279.wreg.fits' IMCMB044= 'obj_280.wreg.fits' IMCMB045= 'obj_281.wreg.fits' IMCMB046= 'obj_282.wreg.fits' IMCMB047= 'obj_283.wreg.fits' IMCMB048= 'obj_284.wreg.fits' IMCMB049= 'obj_285.wreg.fits' IMCMB050= 'obj_286.wreg.fits' NCOMBINE= 50 ZP_FRAME= 27.63162157861393 ZP_ERROR= 0.01864893365751775 ZEROPNT = 23.18624345265482 HISTORY Photometry performed in IDL using 'aper' DAOPHOT equivalent. FWHM = 7.95858573914 /Median FWHM from 2D gaussian fits to stars. SKYRAD1 = 41.0000 /Sky annulus (inner radius) used in photometry SKYRAD2 = 50.0000 /Sky annulus (outer radius) used in photometry GAIN = 170.000 /e-/counts: raw gain * num images in stack EXTNAME = 'PHOTCAT ' / APERIDX = 3 / Index in APER_RADII of best SNR aperture APERRAD = 5.0 / Radius of best SNR aperture in pixels. APERCORR= -0.4966272354125977 / Mag to add to aper mag at APERRAD. ZPT = 27.3892155760 /zeropoint from 09_calibration.pro ZPTERR = 0.0130817237025 /zpt error from 09_calibration.pro END 2MASS00474007+3144397@'~E@?`@?RDy\EE*BB2MASS00473686+3144140@'Υ־@?@?RDy\E]ED,YBB2MASS00473615+3144320@'!.H@?}@?RDy\EGEIBB2MASS00474864+3143507@'ŬGH@?Yy@?RDy\ED-BB2MASS00475993+3144195@'ֺX@?I@?RDy\EuCMBB2MASS00472646+3148420@'v}4@?d<{@?RDy\Dׇ>EgBB2MASS00474396+3147364@'-Dܩ@? ?t@?RDy\E=E @#=`%?oBB@\@@R[@0d!X?3 p@ J@=V2MASS00473094+3148017@'5L@?ck c@?RDy\EEsEBB2MASS00473967+3147395@'ԣax @?X[&@?RDy\EE-LBB2MASS00474099+3147120@'th@?cHj@?RDy\E%IE#pBB2MASS00473111+3147253@'b˧2@?VWi@?RDy\E>0Eq&BB2MASS00474011+3147464@'Ց}@?[@?RDy\ExE*xBB2MASS00474136+3145551@'=5tX@?@?RDy\EWgDE }BB2MASS00474332+3147462@'o'=\@?c@?RDy\E!E]@Ie(a?R,BB@_@S8@.e\Ô?3B@FǏH@Y1V@2MASS00474345+3145007@'ܴ)@?Z5|@?RDy\EzyEBB2MASS00475368+3148270@'3@?ι@?RDy\D+DzA@@&@?XՀBB@G0@BA@0[JX?y=@e';@Ab`2MASS00475086+3147438@' V@?˥S@?RDy\E"Dg[@!68`&?X3BB@ @J@/^Ô?+f@6i@JK@2MASS00475942+3146572@'ڵÜ@?UA@?RDy\E/#fCBB2MASS00475493+3146442@'0IA@?iKY@?RDy\E7^DR|BB2MASS00475858+3148189@'Q@?&=j@?RDy\DòCe@pL(?EBB@=`@J@.C?ӜuE@Vq,R@]kk2MASS00475302+3148354@'WV@?QX'@?RDy\Dߢ8D@)֡?5BBA @F @,C?ү`@WfG +@h 2MASS00475906+3146505@'`ω@?۠&@?RDy\E3xhCBB2MASS00475508+3147347@'T@?d@?RDy\EDM@@'D?W;BB@(@MmL@/\C?թR@~;@N>[2MASS00481167+3145195@([S @?c#@?RDy\EmĠBB2MASS00480654+3146416@( 6?@?:$@?RDy\E9?OBB2MASS00480967+3148448@(}@?ڱ@?RDy\D Ā^BB2MASS00480155+3146295@(QX'@?^)5@?RDy\E@G@BB2MASS00480139+3146436@(y@?__ (R@?RDy\E7~AcBBB2MASS00480742+3148246@(@?΍֥@?RDy\DW9%BB2MASS00480429+3148010@( +X@?H|@?RDy\Eڢì2BB2MASS00472645+3148504@'m@@?c_@?RDy\D̴IEw~BB2MASS00472892+3151370@'b@?<4@?RDy\§{E[BB2MASS00472694+3149455@'}(I%@?N6@?RDy\DE~BB2MASS00474343+3149190@'ܪ[@?l-@?RDy\C, EwHKBB2MASS00473345+3149311@'^ Fe@?G@?RDy\DzE_YBB2MASS00473437+3148580@'T2T@?Z9@?RDy\D½6EX ]BB2MASS00473535+3150089@'me^(@?&@?RDy\DN`EPABB2MASS00475842+3152118@'$К@?޴H0@?RDy\jCBB2MASS00475322+3148485@'S9@?A$~@?RDy\DΑ.D@%y '?PӀBB@f @C`@/kC?߱p@4d3@L)BB2MASS00480691+3151409@(&I@?܃D~o@?RDy\C(BB2MASS00480587+3149503@( λV@?ԥ@?RDy\D}0PZBB2MASS00480713+3152272@(:pe@?x6@?RDy\`/ioBB2MASS00481623+3150073@("6@?D^Ԣ@?RDy\DPnc BB2MASS00473689+3152430@'γ-@?@?RDy\?REDRBB2MASS00473398+3153351@'}A5T@?߹8@?RDy\ĢIE[8aBB2MASS00473121+3152327@'˜P@?2D@?RDy\$Eq!%BB2MASS00474390+3154455@'ݨ\@?z+@?RDy\ E XBB2MASS00474183+3153286@'? @?+8@?RDy\ĚElBB2MASS00474377+3152509@'bLL@?}@?RDy\TE aBB2MASS00475361+3153002@'cb@?&=j@?RDy\lq#D}BB2MASS00474838+3152527@'8? @?᝺&@?RDy\X2DBB2MASS00475185+3154154@'LƂ0@?f¬@?RDy\XDBB2MASS00475223+3155128@'p6@?딦둴@?RDy\-DBB2MASS00475207+3154058@'і@?ѝq@?RDy\DD~>BB2MASS00475077+3154098@'R @?X@?RDy\D ;BB2MASS00480580+3152519@( cϳ1@?Ꮑ@?RDy\WBB2MASS00480314+3152323@(AZ@?*O@?RDy\$C*nBBPTF13ddg @'o@?OO@?RDy\DbDH@&,@?BB@D@J`@3nX?@\l$@@{