SIMPLE = T / Standard FITS file BITPIX = 8 / NAXIS = 2 / NAXIS1 = 777777701 / Signature code for UV data in table NAXIS2 = 0 / No data in primary array EXTEND = T / All data in tables BLOCKED = T / Tape may be blocked HISTORY FILLM / Image created by user24994 at 10-JUN-2010 10:02:34 HISTORY FILLM OUTNAME='19831215 ' OUTCLASS='L BAND' HISTORY FILLM OUTSEQ= 1 OUTDISK= 1 HISTORY FILLM NFILE= 0 INFILE='AVIS:AA0099_1983DEC15_1_' HISTORY FILLM BAND = 'L', QUAL = 0, CALC = ' ' HISTORY FILLM VLAMODE =' ' HISTORY FILLM / Control program ID = HISTORY FILLM / VLA conf. = H HISTORY FILLM / correlator mode = HISTORY FILLM / AP options = HISTORY FILLM /TIMERANG = beginning to end HISTORY FILLM BCHAN = 1 ECHAN = 1 / Spectral channels HISTORY FILLM CPARM(1) = 0.000 / Integration (sec) HISTORY FILLM CPARM(3) = 3. / Max. IF stat. to pass HISTORY FILLM CPARM(4) = 0. / .lt. 0 => no shadow flag HISTORY FILLM CPARM(6) = 1. / Subarray HISTORY FILLM CPARM(7) = 0.000 / FQ entry tolerance HISTORY FILLM CPARM(8) = 0.05 / CL table time increment HISTORY FILLM CPARM(9) = 0.00 / TY table time increment HISTORY FILLM Opacity correction in CL table weighted average of weather HISTORY FILLM and season. weight for weather = 0.50 HISTORY FILLM Gain curve correction in CL table read from file: HISTORY FILLM standard system VLA antenna gains file HISTORY FILLM with variation as function of antenna and band HISTORY FILLM / Telescope = VLA Program = AA99 HISTORY FILLM / Weighted with nominal sensitivities HISTORY FILLM / Data not compressed, no loss of weight info HISTORY FILLM RELEASE = '31DEC07' HISTORY RENAM INNAME='19831215 ' INCLASS='L BAND' HISTORY RENAM INSEQ= 1 INDISK= 1 HISTORY RENAM OUTNAME='19831215 ' OUTCLASS='PREFIX' HISTORY RENAM OUTSEQ= 1 OUTDISK= 1 HISTORY UVFIX RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 10:02:35 HISTORY UVFIX INNAME='19831215 ' INCLASS='PREFIX' HISTORY UVFIX INSEQ= 1 INDISK= 1 HISTORY UVFIX OUTNAME='19831215 ' OUTCLASS='L BAND' HISTORY UVFIX OUTSEQ= 1 OUTDISK= 1 HISTORY UVFIX /Array 1 U, V, W computation HISTORY UVFIX /Obs date=19831215 Obs freq= 1.464900 GHz HISTORY UVFIX /Array center BX= -1.601185365000E+06 meters HISTORY UVFIX /Array center BY= -5.041977547000E+06 meters HISTORY UVFIX /Array center BZ= 3.554875870000E+06 meters HISTORY UVFIX /GMST(0)= 5 32 21.198 data-UTC= 22.000 sec UT1-UTC= 0.000 secHISTORY UVFIX /Clock time corrected by 0.000 sec HISTORY UVFIX BEPOCH = 1979.30 / Besselian epoch of obs. HISTORY QUACK RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 HISTORY QUACK OPCODE ='BEG ' HISTORY QUACK SOURCES = ' ' / All sources HISTORY QUACK /TIMERANG = beginning to end HISTORY QUACK ANTENNAS = 0, HISTORY QUACK SUBARRAY = 0 HISTORY QUACK Freq. ID = -1 HISTORY QUACK FGVER = 1 / FG table HISTORY QUACK REASON = '20 SEC AUTO-QUACK ' / Reason for flagging HISTORY QUACK APARM(2) = 0.33333 / Bad data at start of scan HISTORY QUACK Flagged 0.34 min. of data in 1 scans HISTORY FLAGR RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:05:43 HISTORY FLAGR FLAGVER = 1 / input flag version copied HISTORY FLAGR FLAGOUT = 2 / output flag version written HISTORY FLAGR OPTYPE = 'TIME' / operation type HISTORY FLAGR SOLINT = 23.000 / averaging time in sec HISTORY FLAGR QCLIPCLS= 0.60000 / question excess closure error HISTORY FLAGR MAXBAD(1) = 0.510 / max fract questionable corrs. HISTORY FLAGR MAXBAD(2) = 0.250 / max fract questionable baselines HISTORY FLAGR VECTOR = F / type of amplitude averaging HISTORY FLAGR KILLONES= T / kill or flag singletons HISTORY FLAGR RMSLIM = 0.0000, 0.0000 / min rms allowed in amp and rms HISTORY FLAGR CLIPR(1) = 3.5 / question data > CL(1)*rms from mean HISTORY FLAGR CLIPR(3) = 8.0 / flag amp data > CL(3)*rms from mean HISTORY FLAGR CLIPR(2) = 7.0 / question rms > CL(2)*avgrms above mean HISTORY FLAGR CLIPR(4) = 16.0 / flag rms > CL(1)*avgrms above mean HISTORY FLAGR FLAGD(1) = 0 / integrations fully flagged HISTORY FLAGR FLAGD(2) = 0 / corr/integrations fully flagged HISTORY FLAGR FLAGD(3) = 37 / antennas/integrations flagged HISTORY FLAGR FLAGD(4) = 0 / correlators for all times flagged HISTORY SETJY release ='31DEC07 ' /********* Start 10-JUN-2010 19:05:47 HISTORY SETJY / Resetting flux information to zero HISTORY SETJY BIF = 1 EIF = 2 /Range of IFs HISTORY SETJY SOURCES = '' /All sources selected HISTORY SETJY release ='31DEC07 ' /********* Start 10-JUN-2010 19:05:47 HISTORY SETJY / Flux calculated using known spectrum HISTORY SETJY BIF = 1 EIF = 2 /Range of IFs HISTORY SETJY '3C138 ' IF = 1 FLUX = 8.1704 (Jy calcd) HISTORY SETJY '3C138 ' IF = 2 FLUX = 8.0086 (Jy calcd) HISTORY SETJY / Using (1999.2) VLA or Reynolds (1934-638) coefficients HISTORY CALIB RELEASE ='31DEC07 ' /******* Start 10-JUN-2010 19:05:48 HISTORY CALIB N SOURCES= 1 /Following Sources included: HISTORY CALIB CALSOUR = ' ',' ' HISTORY CALIB QUAL = -1 CALCODE = * HISTORY CALIB FLAGVER = 2 /Flagging table used HISTORY CALIB GAINUSE = 1 /CL table used HISTORY CALIB /TIMERANG = beginning to end HISTORY CALIB SOLINT = 1.00 /Soln. inter. (min) HISTORY CALIB SOLSUB = 1 /Soln. subinterval HISTORY CALIB SOLMIN = 1 /Minimum soln. int. (min) HISTORY CALIB SUBARRAY = 0 REFANT = 0 /Reference Ant. HISTORY CALIB APARM(1) = 3 /Min. no antennas HISTORY CALIB APARM(3) = -1 />0 => avg. RR,LL HISTORY CALIB APARM(5) = -1 />0 => average IFs HISTORY CALIB APARM(7) = 4.0 /SNR cutoff HISTORY CALIB SOLTYPE ='L1R '/Solution type HISTORY CALIB SOLMODE ='P '/Solution mode HISTORY CALIB WEIGHTIT = 0 / fit wts = wt**1.00 HISTORY CALIB CPARM(2) = -1 /1 => Normalize gain HISTORY CALIB CPARM(7) = 2.500 /limit closure displays HISTORY CALIB SNVER = 1 /Output SN table version HISTORY CALIB UVRANGE = 0.000E+00, 1.000E+15 /Min, Max Baseline HISTORY CALIB ANTENNAS = 0 /All antennas selected HISTORY CALIB ANTWT = 1.0 /Weight same for all Ant HISTORY CALIB /Found 1390 good solutions HISTORY CALIB /Failed on 14 solutions HISTORY CALIB RELEASE ='31DEC07 ' /******* Start 10-JUN-2010 19:06:20 HISTORY CALIB N SOURCES= 1 /Following Sources included: HISTORY CALIB CALSOUR = '3C138 ',' ' HISTORY CALIB QUAL = -1 CALCODE = C HISTORY CALIB FLAGVER = 2 /Flagging table used HISTORY CALIB GAINUSE = 1 /CL table used HISTORY CALIB /TIMERANG = beginning to end HISTORY CALIB IN2NAME='3C138_L ' IN2CLASS='MODEL ' HISTORY CALIB IN2SEQ= 1 IN2DISK= 1 HISTORY CALIB INVER = 0 /CC file version no. HISTORY CALIB NMAPS = 1 /Number of clean images used HISTORY CALIB NCOMP( 1)= 1928 /Number of clean comps. HISTORY CALIB SOLINT = 1.00 /Soln. inter. (min) HISTORY CALIB SOLSUB = 1 /Soln. subinterval HISTORY CALIB SOLMIN = 1 /Minimum soln. int. (min) HISTORY CALIB SUBARRAY = 0 REFANT = 0 /Reference Ant. HISTORY CALIB APARM(1) = 3 /Min. no antennas HISTORY CALIB APARM(3) = -1 />0 => avg. RR,LL HISTORY CALIB APARM(5) = -1 />0 => average IFs HISTORY CALIB APARM(7) = 4.0 /SNR cutoff HISTORY CALIB SOLTYPE ='L1R '/Solution type HISTORY CALIB SOLMODE ='P '/Solution mode HISTORY CALIB WEIGHTIT = 0 / fit wts = wt**1.00 HISTORY CALIB CPARM(2) = -1 /1 => Normalize gain HISTORY CALIB CPARM(7) = 2.500 /limit closure displays HISTORY CALIB SNVER = 1 /Output SN table version HISTORY CALIB UVRANGE = 0.000E+00, 1.000E+15 /Min, Max Baseline HISTORY CALIB ANTENNAS = 0 /All antennas selected HISTORY CALIB ANTWT = 1.0 /Weight same for all Ant HISTORY CALIB /Found 1390 good solutions HISTORY CALIB /Failed on 14 solutions HISTORY CLCAL RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:06:21 HISTORY CLCAL OPCODE ='CALI' / MERG, CALI or SMOO HISTORY CLCAL SOURCES = '' / All sources selected HISTORY CLCAL SOUCODE =' ' / Source Cal code HISTORY CLCAL / Calibrators included: HISTORY CLCAL CALSOUR = '3C138 ',' ' HISTORY CLCAL QUAL = -1 CALCODE = '* ' HISTORY CLCAL /TIMERANG = beginning to end HISTORY CLCAL SUBARRAY = 0 HISTORY CLCAL ANTENNAS = 0 / All antennas selected HISTORY CLCAL GAINVER = 1, GAINUSE = 2 / CL table HISTORY CLCAL INTERPOL = '2PT ' / Interpolation type HISTORY CLCAL CUTOFF = 0.0 minutes / Interpolation limit HISTORY CLCAL SNVER = 1 1 / SN table versions used HISTORY CLCAL REFANT = 11 / Reference antenna used HISTORY CLCAL RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:06:21 HISTORY CLCAL OPCODE ='CALI' / MERG, CALI or SMOO HISTORY CLCAL / Sources included: HISTORY CLCAL SOURCES = '3C138 ',' ' HISTORY CLCAL SOUCODE ='* ' / Source Cal code HISTORY CLCAL / Calibrators included: HISTORY CLCAL CALSOUR = '3C138 ',' ' HISTORY CLCAL QUAL = -1 CALCODE = '* ' HISTORY CLCAL /TIMERANG = beginning to end HISTORY CLCAL SUBARRAY = 0 HISTORY CLCAL ANTENNAS = 0 / All antennas selected HISTORY CLCAL GAINVER = 1, GAINUSE = 2 / CL table HISTORY CLCAL INTERPOL = 'SELF' / Interpolation type HISTORY CLCAL CUTOFF = 0.0 minutes / Interpolation limit HISTORY CLCAL SNVER = 1 1 / SN table versions used HISTORY CLCAL REFANT = 11 / Reference antenna used HISTORY CALIB RELEASE ='31DEC07 ' /******* Start 10-JUN-2010 19:06:22 HISTORY CALIB N SOURCES= 1 /Following Sources included: HISTORY CALIB CALSOUR = ' ',' ' HISTORY CALIB QUAL = -1 CALCODE = * HISTORY CALIB FLAGVER = 2 /Flagging table used HISTORY CALIB GAINUSE = 2 /CL table used HISTORY CALIB /TIMERANG = beginning to end HISTORY CALIB SOLINT = 5.00 /Soln. inter. (min) HISTORY CALIB SOLSUB = 1 /Soln. subinterval HISTORY CALIB SOLMIN = 1 /Minimum soln. int. (min) HISTORY CALIB SUBARRAY = 0 REFANT = 0 /Reference Ant. HISTORY CALIB APARM(1) = 3 /Min. no antennas HISTORY CALIB APARM(3) = -1 />0 => avg. RR,LL HISTORY CALIB APARM(5) = -1 />0 => average IFs HISTORY CALIB APARM(7) = 4.0 /SNR cutoff HISTORY CALIB SOLTYPE ='L1R '/Solution type HISTORY CALIB SOLMODE ='A&P '/Solution mode HISTORY CALIB WEIGHTIT = 0 / fit wts = wt**1.00 HISTORY CALIB CPARM(2) = -1 /1 => Normalize gain HISTORY CALIB CPARM(7) = 2.500 /limit closure displays HISTORY CALIB SNVER = 2 /Output SN table version HISTORY CALIB UVRANGE = 0.000E+00, 1.000E+15 /Min, Max Baseline HISTORY CALIB ANTENNAS = 0 /All antennas selected HISTORY CALIB ANTWT = 1.0 /Weight same for all Ant HISTORY CALIB /Found 321 good solutions HISTORY CALIB /Failed on 3 solutions HISTORY CALIB RELEASE ='31DEC07 ' /******* Start 10-JUN-2010 19:06:38 HISTORY CALIB N SOURCES= 1 /Following Sources included: HISTORY CALIB CALSOUR = '3C138 ',' ' HISTORY CALIB QUAL = -1 CALCODE = HISTORY CALIB FLAGVER = 2 /Flagging table used HISTORY CALIB GAINUSE = 2 /CL table used HISTORY CALIB /TIMERANG = beginning to end HISTORY CALIB IN2NAME='3C138_L ' IN2CLASS='MODEL ' HISTORY CALIB IN2SEQ= 1 IN2DISK= 1 HISTORY CALIB INVER = 0 /CC file version no. HISTORY CALIB NMAPS = 1 /Number of clean images used HISTORY CALIB NCOMP( 1)= 1928 /Number of clean comps. HISTORY CALIB SOLINT = 5.00 /Soln. inter. (min) HISTORY CALIB SOLSUB = 1 /Soln. subinterval HISTORY CALIB SOLMIN = 1 /Minimum soln. int. (min) HISTORY CALIB SUBARRAY = 0 REFANT = 0 /Reference Ant. HISTORY CALIB APARM(1) = 3 /Min. no antennas HISTORY CALIB APARM(3) = -1 />0 => avg. RR,LL HISTORY CALIB APARM(5) = -1 />0 => average IFs HISTORY CALIB APARM(7) = 4.0 /SNR cutoff HISTORY CALIB SOLTYPE ='L1R '/Solution type HISTORY CALIB SOLMODE ='A&P '/Solution mode HISTORY CALIB WEIGHTIT = 0 / fit wts = wt**1.00 HISTORY CALIB CPARM(2) = -1 /1 => Normalize gain HISTORY CALIB CPARM(7) = 2.500 /limit closure displays HISTORY CALIB SNVER = 2 /Output SN table version HISTORY CALIB UVRANGE = 0.000E+00, 1.000E+15 /Min, Max Baseline HISTORY CALIB ANTENNAS = 0 /All antennas selected HISTORY CALIB ANTWT = 1.0 /Weight same for all Ant HISTORY CALIB /Found 321 good solutions HISTORY CALIB /Failed on 3 solutions HISTORY GETJY RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:06:39 HISTORY GETJY INNAME='19831215 ' INCLASS='L BAND' HISTORY GETJY INSEQ= 1 INDISK= 1 HISTORY GETJY SOURCES = '' /All sources selected HISTORY GETJY SOUCODE ='* ' /Source Cal code HISTORY GETJY /Calibrators included: HISTORY GETJY CALSOUR = '3C138 ',' ' HISTORY GETJY QUAL = 0 CALCODE = HISTORY GETJY BIF = 1, EIF = 2 / IF range HISTORY GETJY /TIMERANG = beginning to end HISTORY GETJY SUBARRAY = 0 HISTORY GETJY ANTENNAS = 0 /All antennas selected HISTORY GETJY SNVER = 2 /SN version, 0=> all HISTORY CLCAL RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:06:39 HISTORY CLCAL OPCODE ='CALI' / MERG, CALI or SMOO HISTORY CLCAL SOURCES = '' / All sources selected HISTORY CLCAL SOUCODE =' ' / Source Cal code HISTORY CLCAL / Calibrators included: HISTORY CLCAL CALSOUR = '3C138 ',' ' HISTORY CLCAL QUAL = -1 CALCODE = '* ' HISTORY CLCAL /TIMERANG = beginning to end HISTORY CLCAL SUBARRAY = 0 HISTORY CLCAL ANTENNAS = 0 / All antennas selected HISTORY CLCAL GAINVER = 2, GAINUSE = 3 / CL table HISTORY CLCAL INTERPOL = '2PT ' / Interpolation type HISTORY CLCAL CUTOFF = 0.0 minutes / Interpolation limit HISTORY CLCAL SNVER = 2 2 / SN table versions used HISTORY CLCAL REFANT = 11 / Reference antenna used HISTORY CLCAL RELEASE ='31DEC07 ' /********* Start 10-JUN-2010 19:06:39 HISTORY CLCAL OPCODE ='CALI' / MERG, CALI or SMOO HISTORY CLCAL / Sources included: HISTORY CLCAL SOURCES = '3C138 ',' ' HISTORY CLCAL SOUCODE ='* ' / Source Cal code HISTORY CLCAL / Calibrators included: HISTORY CLCAL CALSOUR = '3C138 ',' ' HISTORY CLCAL QUAL = -1 CALCODE = '* ' HISTORY CLCAL /TIMERANG = beginning to end HISTORY CLCAL SUBARRAY = 0 HISTORY CLCAL ANTENNAS = 0 / All antennas selected HISTORY CLCAL GAINVER = 2, GAINUSE = 3 / CL table HISTORY CLCAL INTERPOL = 'SELF' / Interpolation type HISTORY CLCAL CUTOFF = 0.0 minutes / Interpolation limit HISTORY CLCAL SNVER = 2 2 / SN table versions used HISTORY CLCAL REFANT = 11 / Reference antenna used ORIGIN = 'AIPSvlbacald-c VLA_PIPE 31DEC07' / DATE = '2010-06-11' / File written on Greenwich yyyy-mm-dd HISTORY AIPS IMNAME='19831215 ' IMCLASS='L BAND' IMSEQ= 1 / HISTORY AIPS USERNO=24994 / COMMENT FITS (Flexible Image Transport System) format is defined in 'AstronomyCOMMENT and Astrophysics', volume 376, page 359; bibcode: 2001A&A...376..359H / Where baseline = 256*ant1 + ant2 + (array#-1)/100 HISTORY AIPS SORT ORDER = 'TB' / Where T means TIME (IAT) / Where B means BASELINE NUM HISTORY AIPS IPIECE= 1 NPIECE= 1 / piece number HISTORY AIPS FIRSTVIS= 1 / first vis # HISTORY AIPS LASTVIS = 26676 / last vis # HISTORY AIPS / uv header which will appear with table HISTORY AIPS GCOUNT = 26676 HISTORY AIPS PCOUNT = 7 HISTORY AIPS PTYPE1 = 'UU---SIN' HISTORY AIPS PSCAL1 = 6.8264045329134E-10 HISTORY AIPS PTYPE2 = 'VV---SIN' HISTORY AIPS PSCAL2 = 6.8264045329134E-10 HISTORY AIPS PTYPE3 = 'WW---SIN' HISTORY AIPS PSCAL3 = 6.8264045329134E-10 HISTORY AIPS PTYPE4 = 'BASELINE' HISTORY AIPS PTYPE5 = 'DATE ' HISTORY AIPS PZERO5 = 2.4456835000000E+06 HISTORY AIPS PTYPE6 = 'SOURCE ' HISTORY AIPS PTYPE7 = 'FREQSEL ' HISTORY AIPS NAXIS = 6 HISTORY AIPS NAXIS1 = 3 HISTORY AIPS CTYPE1 = 'COMPLEX ' HISTORY AIPS CRVAL1 = 1.0000000000000E+00 HISTORY AIPS CDELT1 = 1.000000000E+00 HISTORY AIPS CRPIX1 = 1.000000000E+00 HISTORY AIPS CROTA1 = 0.000000000E+00 HISTORY AIPS NAXIS2 = 4 HISTORY AIPS CTYPE2 = 'STOKES ' HISTORY AIPS CRVAL2 = -1.0000000000000E+00 HISTORY AIPS CDELT2 = -1.000000000E+00 HISTORY AIPS CRPIX2 = 1.000000000E+00 HISTORY AIPS CROTA2 = 0.000000000E+00 HISTORY AIPS NAXIS3 = 2 HISTORY AIPS CTYPE3 = 'IF ' HISTORY AIPS CRVAL3 = 1.0000000000000E+00 HISTORY AIPS CDELT3 = 1.000000000E+00 HISTORY AIPS CRPIX3 = 1.000000000E+00 HISTORY AIPS CROTA3 = 0.000000000E+00 HISTORY AIPS NAXIS4 = 1 HISTORY AIPS CTYPE4 = 'FREQ ' HISTORY AIPS CRVAL4 = 1.4648999999612E+09 HISTORY AIPS CDELT4 = 5.000000000E+07 HISTORY AIPS CRPIX4 = 1.000000000E+00 HISTORY AIPS CROTA4 = 0.000000000E+00 HISTORY AIPS NAXIS5 = 1 HISTORY AIPS CTYPE5 = 'RA ' HISTORY AIPS CRVAL5 = 0.0000000000000E+00 HISTORY AIPS CDELT5 = 1.000000000E+00 HISTORY AIPS CRPIX5 = 1.000000000E+00 HISTORY AIPS CROTA5 = 0.000000000E+00 HISTORY AIPS NAXIS6 = 1 HISTORY AIPS CTYPE6 = 'DEC ' HISTORY AIPS CRVAL6 = 0.0000000000000E+00 HISTORY AIPS CDELT6 = 1.000000000E+00 HISTORY AIPS CRPIX6 = 1.000000000E+00 HISTORY AIPS CROTA6 = 0.000000000E+00 HISTORY AIPS OBJECT = 'MULTI ' / Source name HISTORY AIPS TELESCOP= 'VLA ' / HISTORY AIPS INSTRUME= 'VLA ' / HISTORY AIPS OBSERVER= 'AA99 ' / HISTORY AIPS DATE-OBS= '1983-12-15' / Obs start date YYYY-MM-DD HISTORY AIPS DATE-MAP= '2010-06-10' / Last processing date YYYY-MM-DD HISTORY AIPS BSCALE = 1.00000000000E+00 / REAL = TAPE * BSCALE + BZERO HISTORY AIPS BZERO = 0.00000000000E+00 / HISTORY AIPS BUNIT = 'UNCALIB ' / Units of flux HISTORY AIPS EPOCH = 2.000000000E+03 / Epoch of RA DEC HISTORY AIPS BLANK = -1 / IEEE not-a-number blanked pixelsHISTORY AIPS ALTRPIX = 1.000000000E+00 / Altenate FREQ/VEL ref pixel HISTORY AIPS DATE-OBS= '1983-12-15' HISTORY AIPS DATE-MAP= '2010-06-10' END XTENSION= 'BINTABLE' / Extension type BITPIX = 8 / Binary data NAXIS = 2 / Table is a matrix NAXIS1 = 86 / Width of table in bytes NAXIS2 = 29 / Number of entries in table PCOUNT = 0 / Random parameter count GCOUNT = 1 / Group count TFIELDS = 12 / Number of fields in each row EXTNAME = 'AIPS AN ' / AIPS table file EXTVER = 1 / Version number of table TFORM1 = '8A ' / FORTRAN format of field 1 TTYPE1 = 'ANNAME ' / Type (heading) of field 1 TUNIT1 = ' ' / Physical units of field 1 TFORM2 = '3D ' / FORTRAN format of field 2 TTYPE2 = 'STABXYZ ' / Type (heading) of field 2 TUNIT2 = 'METERS ' / Physical units of field 2 TFORM3 = '0D ' / FORTRAN format of field 3 TTYPE3 = 'ORBPARM ' / Type (heading) of field 3 TUNIT3 = ' ' / Physical units of field 3 TFORM4 = '1J ' / FORTRAN format of field 4 TTYPE4 = 'NOSTA ' / Type (heading) of field 4 TUNIT4 = ' ' / Physical units of field 4 TFORM5 = '1J ' / FORTRAN format of field 5 TTYPE5 = 'MNTSTA ' / Type (heading) of field 5 TUNIT5 = ' ' / Physical units of field 5 TFORM6 = '1E ' / FORTRAN format of field 6 TTYPE6 = 'STAXOF ' / Type (heading) of field 6 TUNIT6 = 'METERS ' / Physical units of field 6 TFORM7 = '1A ' / FORTRAN format of field 7 TTYPE7 = 'POLTYA ' / Type (heading) of field 7 TUNIT7 = ' ' / Physical units of field 7 TFORM8 = '1E ' / FORTRAN format of field 8 TTYPE8 = 'POLAA ' / Type (heading) of field 8 TUNIT8 = 'DEGREES ' / Physical units of field 8 TFORM9 = '4E ' / FORTRAN format of field 9 TTYPE9 = 'POLCALA ' / Type (heading) of field 9 TUNIT9 = ' ' / Physical units of field 9 TFORM10 = '1A ' / FORTRAN format of field 10 TTYPE10 = 'POLTYB ' / Type (heading) of field 10 TUNIT10 = ' ' / physical units of field 10 TFORM11 = '1E ' / FORTRAN format of field 11 TTYPE11 = 'POLAB ' / Type (heading) of field 11 TUNIT11 = 'DEGREES ' / physical units of field 11 TFORM12 = '4E ' / FORTRAN format of field 12 TTYPE12 = 'POLCALB ' / Type (heading) of field 12 TUNIT12 = ' ' / physical units of field 12 ARRAYX = -0.16011853650000000E+07 ARRAYY = -0.50419775470000003E+07 ARRAYZ = 0.35548758700000001E+07 GSTIA0 = 0.44308832477857726E+03 DEGPDY = 0.36098564497180121E+03 FREQ = 0.14648999999611986E+10 RDATE = '1983-12-15' POLARX = 0.00000000000000000E+00 POLARY = 0.00000000000000000E+00 UT1UTC = 0.00000000000000000E+00 DATUTC = 0.22000000000000000E+02 TIMSYS = 'IAT ' ARRNAM = 'VLA ' NUMORB = 0 NOPCAL = 4 FREQID = -1 IATUTC = 0.00000000000000000E+00 END VLA: N64t |@Y( R L VLA: E20@4a@+UN R L VLA: E28@583%&@h:iݲ> XR L VLA: E12@l&O@|"u=' ;iR L VLA: N56í/h@c,Dx R L VLA: W24@kMU"5 J R L VLA: W28@hu5x12X X k/R L VLA: E36@=@[^"Qi3 < R L VLA: W8 @cPΘyY~k R L VLA: E24@'@XSq R L VLA: E4 @Av@`NI0Y ;-sR L VLA: E8 @\ @@{kG e/"+ R L VLA: W12@s"$w|!Z R L VLA: W36@@P@rX:%.bxw R L VLA: N8 ns͓p1Ce@v| R L VLA: E32@${@}oz cŗ LR L VLA: E16@w%,@`2 R L VLA: OUT R L VLA: N48H@)y-@oI0k DxR L VLA: W32@C& l&aIi ;ZR L VLA: N322T*yo>@[6/Ӯ R L VLA: W16@=>Zim R L VLA: N16C\_>ׂγ@xs;\ R L VLA: N72ĨcB@k|( R L VLA: N40Y)(^y_A@B R L VLA: N24].p5oﵩ@,l R L VLA: W4 @Gu,X^BPF+o R L VLA: W20@,)3"ep! R L VPT: OUT R L XTENSION= 'BINTABLE' / Extension type BITPIX = 8 / Binary data NAXIS = 2 / Table is a matrix NAXIS1 = 28 / Width of table in bytes NAXIS2 = 1 / Number of entries in table PCOUNT = 0 / Random parameter count GCOUNT = 1 / Group count TFIELDS = 7 / Number of fields in each row EXTNAME = 'AIPS NX ' / AIPS table file EXTVER = 1 / Version number of table TFORM1 = '1E ' / FORTRAN format of field 1 TTYPE1 = 'TIME ' / Type (heading) of field 1 TUNIT1 = 'DAYS ' / Physical units of field 1 TFORM2 = '1E ' / FORTRAN format of field 2 TTYPE2 = 'TIME INTERVAL ' / Type (heading) of field 2 TUNIT2 = 'DAYS ' / Physical units of field 2 TFORM3 = '1J ' / FORTRAN format of field 3 TTYPE3 = 'SOURCE ID ' / Type (heading) of field 3 TUNIT3 = ' ' / Physical units of field 3 TFORM4 = '1J ' / FORTRAN format of field 4 TTYPE4 = 'SUBARRAY ' / Type (heading) of field 4 TUNIT4 = ' ' / Physical units of field 4 TFORM5 = '1J ' / FORTRAN format of field 5 TTYPE5 = 'START VIS ' / Type (heading) of field 5 TUNIT5 = ' ' / Physical units of field 5 TFORM6 = '1J ' / FORTRAN format of field 6 TTYPE6 = 'END VIS ' / Type (heading) of field 6 TUNIT6 = ' ' / Physical units of field 6 TFORM7 = '1J ' / FORTRAN format of field 7 TTYPE7 = 'FREQ ID ' / Type (heading) of field 7 TUNIT7 = ' ' / Physical units of field 7 END =<8 h4 XTENSION= 'BINTABLE' / Extension type BITPIX = 8 / Binary data NAXIS = 2 / Table is a matrix NAXIS1 = 172 / Width of table in bytes NAXIS2 = 1 / Number of entries in table PCOUNT = 0 / Random parameter count GCOUNT = 1 / Group count TFIELDS = 19 / Number of fields in each row EXTNAME = 'AIPS SU ' / AIPS table file EXTVER = 1 / Version number of table TFORM1 = '1J ' / FORTRAN format of field 1 TTYPE1 = 'ID. NO. ' / Type (heading) of field 1 TUNIT1 = ' ' / Physical units of field 1 TFORM2 = '16A ' / FORTRAN format of field 2 TTYPE2 = 'SOURCE ' / Type (heading) of field 2 TUNIT2 = ' ' / Physical units of field 2 TFORM3 = '1J ' / FORTRAN format of field 3 TTYPE3 = 'QUAL ' / Type (heading) of field 3 TUNIT3 = ' ' / Physical units of field 3 TFORM4 = '4A ' / FORTRAN format of field 4 TTYPE4 = 'CALCODE ' / Type (heading) of field 4 TUNIT4 = ' ' / Physical units of field 4 TFORM5 = '2E ' / FORTRAN format of field 5 TTYPE5 = 'IFLUX ' / Type (heading) of field 5 TUNIT5 = 'JY ' / Physical units of field 5 TFORM6 = '2E ' / FORTRAN format of field 6 TTYPE6 = 'QFLUX ' / Type (heading) of field 6 TUNIT6 = 'JY ' / Physical units of field 6 TFORM7 = '2E ' / FORTRAN format of field 7 TTYPE7 = 'UFLUX ' / Type (heading) of field 7 TUNIT7 = 'JY ' / Physical units of field 7 TFORM8 = '2E ' / FORTRAN format of field 8 TTYPE8 = 'VFLUX ' / Type (heading) of field 8 TUNIT8 = 'JY ' / Physical units of field 8 TFORM9 = '2D ' / FORTRAN format of field 9 TTYPE9 = 'FREQOFF ' / Type (heading) of field 9 TUNIT9 = 'HZ ' / Physical units of field 9 TFORM10 = '1D ' / FORTRAN format of field 10 TTYPE10 = 'BANDWIDTH ' / Type (heading) of field 10 TUNIT10 = 'HZ ' / physical units of field 10 TFORM11 = '1D ' / FORTRAN format of field 11 TTYPE11 = 'RAEPO ' / Type (heading) of field 11 TUNIT11 = 'DEGREES ' / physical units of field 11 TFORM12 = '1D ' / FORTRAN format of field 12 TTYPE12 = 'DECEPO ' / Type (heading) of field 12 TUNIT12 = 'DEGREES ' / physical units of field 12 TFORM13 = '1D ' / FORTRAN format of field 13 TTYPE13 = 'EPOCH ' / Type (heading) of field 13 TUNIT13 = 'YEARS ' / physical units of field 13 TFORM14 = '1D ' / FORTRAN format of field 14 TTYPE14 = 'RAAPP ' / Type (heading) of field 14 TUNIT14 = 'DEGREES ' / physical units of field 14 TFORM15 = '1D ' / FORTRAN format of field 15 TTYPE15 = 'DECAPP ' / Type (heading) of field 15 TUNIT15 = 'DEGREES ' / physical units of field 15 TFORM16 = '2D ' / FORTRAN format of field 16 TTYPE16 = 'LSRVEL ' / Type (heading) of field 16 TUNIT16 = 'M/SEC ' / physical units of field 16 TFORM17 = '2D ' / FORTRAN format of field 17 TTYPE17 = 'RESTFREQ ' / Type (heading) of field 17 TUNIT17 = 'HZ ' / physical units of field 17 TFORM18 = '1D ' / FORTRAN format of field 18 TTYPE18 = 'PMRA ' / Type (heading) of field 18 TUNIT18 = 'DEG/DAY ' / physical units of field 18 TFORM19 = '1D ' / FORTRAN format of field 19 TTYPE19 = 'PMDEC ' / Type (heading) of field 19 TUNIT19 = 'DEG/DAY ' / physical units of field 19 NO_IF = 2 VELTYP = ' ' VELDEF = ' ' FREQID = -1 END 3C138 C AA #' + Aׄ @T[@0@@ @T3k|@0@j XTENSION= 'BINTABLE' / Extension type BITPIX = 8 / Binary data NAXIS = 2 / Table is a matrix NAXIS1 = 44 / Width of table in bytes NAXIS2 = 1 / Number of entries in table PCOUNT = 0 / Random parameter count GCOUNT = 1 / Group count TFIELDS = 5 / Number of fields in each row EXTNAME = 'AIPS FQ ' / AIPS table file EXTVER = 1 / Version number of table TFORM1 = '1J ' / FORTRAN format of field 1 TTYPE1 = 'FRQSEL ' / Type (heading) of field 1 TUNIT1 = ' ' / Physical units of field 1 TFORM2 = '2D ' / FORTRAN format of field 2 TTYPE2 = 'IF FREQ ' / Type (heading) of field 2 TUNIT2 = 'HZ ' / Physical units of field 2 TFORM3 = '2E ' / FORTRAN format of field 3 TTYPE3 = 'CH WIDTH ' / Type (heading) of field 3 TUNIT3 = 'HZ ' / Physical units of field 3 TFORM4 = '2E ' / FORTRAN format of field 4 TTYPE4 = 'TOTAL BANDWIDTH ' / Type (heading) of field 4 TUNIT4 = 'HZ ' / Physical units of field 4 TFORM5 = '2J ' / FORTRAN format of field 5 TTYPE5 = 'SIDEBAND ' / Type (heading) of field 5 TUNIT5 = ' ' / Physical units of field 5 NO_IF = 2 END >( A׃(L> L> L> L> XTENSION= 'BINTABLE' / Extension type BITPIX = 8 / Binary data NAXIS = 2 / Table is a matrix NAXIS1 = 192 / Width of table in bytes NAXIS2 = 2052 / Number of entries in table PCOUNT = 0 / Random parameter count GCOUNT = 1 / Group count TFIELDS = 33 / Number of fields in each row EXTNAME = 'AIPS CL ' / AIPS table file EXTVER = 1 / Version number of table TFORM1 = '1D ' / FORTRAN format of field 1 TTYPE1 = 'TIME ' / Type (heading) of field 1 TUNIT1 = 'DAYS ' / Physical units of field 1 TFORM2 = '1E ' / FORTRAN format of field 2 TTYPE2 = 'TIME INTERVAL ' / Type (heading) of field 2 TUNIT2 = 'DAYS ' / Physical units of field 2 TFORM3 = '1J ' / FORTRAN format of field 3 TTYPE3 = 'SOURCE ID ' / Type (heading) of field 3 TUNIT3 = ' ' / Physical units of field 3 TFORM4 = '1J ' / FORTRAN format of field 4 TTYPE4 = 'ANTENNA NO. ' / Type (heading) of field 4 TUNIT4 = ' ' / Physical units of field 4 TFORM5 = '1J ' / FORTRAN format of field 5 TTYPE5 = 'SUBARRAY ' / Type (heading) of field 5 TUNIT5 = ' ' / Physical units of field 5 TFORM6 = '1J ' / FORTRAN format of field 6 TTYPE6 = 'FREQ ID ' / Type (heading) of field 6 TUNIT6 = ' ' / Physical units of field 6 TFORM7 = '1E ' / FORTRAN format of field 7 TTYPE7 = 'I.FAR.ROT ' / Type (heading) of field 7 TUNIT7 = 'RAD/M**2' / Physical units of field 7 TFORM8 = '1D ' / FORTRAN format of field 8 TTYPE8 = 'GEODELAY ' / Type (heading) of field 8 TUNIT8 = 'SECONDS ' / Physical units of field 8 TFORM9 = '2E ' / FORTRAN format of field 9 TTYPE9 = 'DOPPOFF ' / Type (heading) of field 9 TUNIT9 = 'HZ ' / Physical units of field 9 TFORM10 = '1E ' / FORTRAN format of field 10 TTYPE10 = 'ATMOS ' / Type (heading) of field 10 TUNIT10 = 'SECONDS ' / physical units of field 10 TFORM11 = '1E ' / FORTRAN format of field 11 TTYPE11 = 'DATMOS ' / Type (heading) of field 11 TUNIT11 = 'SEC/SEC ' / physical units of field 11 TFORM12 = '1E ' / FORTRAN format of field 12 TTYPE12 = 'MBDELAY1 ' / Type (heading) of field 12 TUNIT12 = 'SECONDS ' / physical units of field 12 TFORM13 = '1E ' / FORTRAN format of field 13 TTYPE13 = 'CLOCK 1 ' / Type (heading) of field 13 TUNIT13 = 'SECONDS ' / physical units of field 13 TFORM14 = '1E ' / FORTRAN format of field 14 TTYPE14 = 'DCLOCK 1 ' / Type (heading) of field 14 TUNIT14 = 'SEC/SEC ' / physical units of field 14 TFORM15 = '1E ' / FORTRAN format of field 15 TTYPE15 = 'DISP 1 ' / Type (heading) of field 15 TUNIT15 = 'SECONDS ' / physical units of field 15 TFORM16 = '1E ' / FORTRAN format of field 16 TTYPE16 = 'DDISP 1 ' / Type (heading) of field 16 TUNIT16 = 'SEC/SEC ' / physical units of field 16 TFORM17 = '2E ' / FORTRAN format of field 17 TTYPE17 = 'REAL1 ' / Type (heading) of field 17 TUNIT17 = ' ' / physical units of field 17 TFORM18 = '2E ' / FORTRAN format of field 18 TTYPE18 = 'IMAG1 ' / Type (heading) of field 18 TUNIT18 = ' ' / physical units of field 18 TFORM19 = '2E ' / FORTRAN format of field 19 TTYPE19 = 'RATE 1 ' / Type (heading) of field 19 TUNIT19 = 'SEC/SEC ' / physical units of field 19 TFORM20 = '2E ' / FORTRAN format of field 20 TTYPE20 = 'DELAY 1 ' / Type (heading) of field 20 TUNIT20 = 'SECONDS ' / physical units of field 20 TFORM21 = '2E ' / FORTRAN format of field 21 TTYPE21 = 'WEIGHT 1 ' / Type (heading) of field 21 TUNIT21 = ' ' / physical units of field 21 TFORM22 = '2J ' / FORTRAN format of field 22 TTYPE22 = 'REFANT 1 ' / Type (heading) of field 22 TUNIT22 = ' ' / physical units of field 22 TFORM23 = '1E ' / FORTRAN format of field 23 TTYPE23 = 'MBDELAY2 ' / Type (heading) of field 23 TUNIT23 = 'SECONDS ' / physical units of field 23 TFORM24 = '1E ' / FORTRAN format of field 24 TTYPE24 = 'CLOCK 2 ' / Type (heading) of field 24 TUNIT24 = 'SECONDS ' / physical units of field 24 TFORM25 = '1E ' / FORTRAN format of field 25 TTYPE25 = 'DCLOCK 2 ' / Type (heading) of field 25 TUNIT25 = 'SEC/SEC ' / physical units of field 25 TFORM26 = '1E ' / FORTRAN format of field 26 TTYPE26 = 'DISP 2 ' / Type (heading) of field 26 TUNIT26 = 'SECONDS ' / physical units of field 26 TFORM27 = '1E ' / FORTRAN format of field 27 TTYPE27 = 'DDISP 2 ' / Type (heading) of field 27 TUNIT27 = 'SEC/SEC ' / physical units of field 27 TFORM28 = '2E ' / FORTRAN format of field 28 TTYPE28 = 'REAL2 ' / Type (heading) of field 28 TUNIT28 = ' ' / physical units of field 28 TFORM29 = '2E ' / FORTRAN format of field 29 TTYPE29 = 'IMAG2 ' / Type (heading) of field 29 TUNIT29 = ' ' / physical units of field 29 TFORM30 = '2E ' / FORTRAN format of field 30 TTYPE30 = 'RATE 2 ' / Type (heading) of field 30 TUNIT30 = 'SEC/SEC ' / physical units of field 30 TFORM31 = '2E ' / FORTRAN format of field 31 TTYPE31 = 'DELAY 2 ' / Type (heading) of field 31 TUNIT31 = 'SECONDS ' / physical units of field 31 TFORM32 = '2E ' / FORTRAN format of field 32 TTYPE32 = 'WEIGHT 2 ' / Type (heading) of field 32 TUNIT32 = ' ' / physical units of field 32 TFORM33 = '2J ' / FORTRAN format of field 33 TTYPE33 = 'REFANT 2 ' / Type (heading) of field 33 TUNIT33 = ' ' / physical units of field 33 NO_ANT = 29 NO_POL = 2 NO_IF = 2 NO_TERM = 1 MGMOD = 0.10000000000000000E+01 REVISION= 10 ISORTORD= 4 END ?@ 8.E >=5 ?:z?:z ? ? ?:z?:z ? ? ? 8.E >%\ ?:?: ? ? ?:?: ? ? ? 8.E >! w ?:?: ? ? ?:?: ? ? ? 8.E >3#M ?; ?; ? ? ?; ?; ? ? ?@ 8.E >DR$ ?;Z?;Z ? ? ?;Z?;Z ? ? ?@ 8.E >U ?;?; ? ? ?;?; ? ? ?l 8.E >f# ?;?; ? ? ?;?; ? ? ? 8.E >w/E ?<?< ? ? ?<?< ? ? ?З 8.E >ԉ ;~l~ ?<7?<7 ? ? ?<7?<7 ? ? ?- 8.E >Ԛ8GfU ?