generated from erosita/uds
10 lines
14 KiB
Plaintext
10 lines
14 KiB
Plaintext
SIMPLE = T / Standard FITS Format BITPIX = 8 / Character data NAXIS = 0 / No Image --- just extension(s) EXTEND = T / There are standard extensions ORIGIN = 'xml2fits_v1.95' / Converted from XML-Astrores to FITS e-mail: question@simbad.u-strasbg.fr COMMENT ARG='-rm' LONGSTRN= 'OGIP 1.0' / Long string convention (&/CONTINUE) may be usedDATE = '2023-04-14' / Written on 2023-04-14:10:34:11 (GMT) by: www-data@vizier.astro.unistra.fr ********************************************************** EXCERPT from catalogues stored in VizieR (CDS) with the following conditions: ********************************************************** VizieR Astronomical Server vizier.cds.unistra.fr Date: 2023-04-14T10:34:11 [V7.296] Explanations and Statistics of UCDs: See LINK below In case of problem, please report to: cds-question@unistra.fr INFO = 'version=7.296' / # INFO = '-ref=VIZ64392b8d2535cb' / # INFO = '-out.max=unlimited' / # Q-PARAMS= 20 / Number of queryParameters (followed by list) -oc.form=dec -out.max=unlimited #out.form=FITS (binary) Table -nav=cat:J/A+A/652/A12&tab:{J/A+A/652/A12/table3}&key:source=J/A+A/652/ A12/table3&HTTPPRM:& -c.eq=J2000 -c.r= 2 -c.u=arcmin -c.geom=r -source=J/A+A/652/A12/table3 -order=I -out=XClass -out=RAJ2000 -out=DEJ2000 -out=z -out=f_z -out=Counts -out=CR -out=MLdet -out=MLext -out=extent # #RESOURCE=yCat_36520012 #Name: J/A+A/652/A12 #Title: The new X-Class catalogue (Koulouridis+, 2021) #Coosys J2000: eq_FK5 J2000 END XTENSION= 'BINTABLE' / Binary Table Extension BITPIX = 8 / binary data NAXIS = 2 / Simple 2-D matrix NAXIS1 = 75 / Number of bytes per record NAXIS2 = 25 / Number of records PCOUNT = 0 / Get rid of random parameters GCOUNT = 1 / Only one group (isn't it obvious?) TFIELDS = 10 / Number of data fields (columns) CDS-CAT = 'J/A+A/652/A12' / Catalogue designation in CDS nomenclature The new X-Class catalogue (Koulouridis+, 2021) EXTNAME = 'J_A_A_652_A12_table3' / Identification of the table CDS-NAME= 'J/A+A/652/A12/table3' / Table name in METAtab The new X-CLASS catalogue (table 3) UCD__1 = 'meta.id;meta.main' / ................................byte#0 TDISP1 = 'I5 ' / Display Fortran Format TFORM1 = 'J ' / 32-bit integer TTYPE1 = 'XClass ' / Cluster name (xclass) UCD__2 = 'pos.eq.ra;meta.main' / ...............................byte#4 TDISP2 = 'F8.4 ' / Display Fortran Format TFORM2 = 'D ' / 64-bit floating-point (double precision) TTYPE2 = 'RAJ2000 ' / Right Ascension (J2000) (pipeline) (ra) TUNIT2 = 'deg ' / degree UCD__3 = 'pos.eq.dec;meta.main' / ..............................byte#12 TDISP3 = 'F8.4 ' / Display Fortran Format TFORM3 = 'D ' / 64-bit floating-point (double precision) TTYPE3 = 'DEJ2000 ' / Declination (J2000) (pipeline) (dec) TUNIT3 = 'deg ' / degree UCD__4 = 'src.redshift' / ................................byte#20 TDISP4 = 'F7.4 ' / Display Fortran Format TFORM4 = 'E ' / 32-bit floating-point (simple precision) TTYPE4 = 'z ' / ? Redshift (redshift) UCD__5 = 'meta.code' / ................................byte#24 TDISP5 = 'A11 ' / Display Fortran Format TFORM5 = '11A ' / Ascii string TTYPE5 = 'f_z ' / Redshift status (status) (1) UCD__6 = 'phot.count;em.X-ray.soft' / ..........................byte#35 TDISP6 = 'F12.4 ' / Display Fortran Format TFORM6 = 'D ' / 64-bit floating-point (double precision) TTYPE6 = 'Counts ' / Number of counts observed in band B2 0.5-2keV (total_counts) TUNIT6 = 'ct ' / count UCD__7 = 'phot.count;em.X-ray' / ...............................byte#43 TDISP7 = 'F10.6 ' / Display Fortran Format TFORM7 = 'D ' / 64-bit floating-point (double precision) TTYPE7 = 'CR ' / Total count rate observed in band B2 0.5-2keV (total_rate) TUNIT7 = 'ct/s ' / count per second UCD__8 = 'stat.likelihood' / ................................byte#51 TDISP8 = 'F12.4 ' / Display Fortran Format TFORM8 = 'D ' / 64-bit floating-point (double precision) TTYPE8 = 'MLdet ' / Detection likelihood DET_ML (emldetect_ml) UCD__9 = 'stat.likelihood' / ................................byte#59 TDISP9 = 'F12.4 ' / Display Fortran Format TFORM9 = 'D ' / 64-bit floating-point (double precision) TTYPE9 = 'MLext ' / Extension statistic EXT_LIKE (emldetect_extent_ml) UCD__10 = 'phys.angSize' / ................................byte#67 TDISP10 = 'F9.5 ' / Display Fortran Format TFORM10 = 'D ' / 64-bit floating-point (double precision) TTYPE10 = 'extent ' / [5/447.5] Angular extent EXT (extent) TUNIT10 = 'arcsec ' / second of arc END |