Show | Sort | Join tables | Column | Constraint | Explain (UCD) |
| | (ALL) | recno | | Record number assigned by the VizieR team. Should Not be used for identification. (meta.record) (RECORD) |
| | (ALL) | Set | | (i) [1/18] Set number (meta.id;meta.main) (ID_SET) |
| | (1) | X | | X abundance (0, 0.7374, 1) (phys.abund.X) (PHYS_ABUND_X) |
| | (1) | Y | | Y abundance (0, 0.2492, 0.2586, 0.2613, 0.2625, 1) (phys.abund.Y) (PHYS_ABUND_Y) |
| | (1) | Z | | Z abundance (0, 1.34E-2, 4.02E-3, 1.34E-3, 1.34E-4) (src.redshift) (PHYS_ABUND_Z) |
| | (1) | logg | [cm/s2] | Logarithm of surface gravity (14.0, 14.3, 14.6) (phys.gravity) (PHYS_GRAVITY_SURFACE) |
| | (1) | TEdd | keV | Eddington temperature (9 values) (phys.temperature.effective) (PHYS_TEMP_EFFEC) |
| | (1) | R | km | Neutron star radius (8.16, 10.88, 14.80) (phys.size.radius) (PHYS_SIZE_RADIUS_GENERAL) |
| | (1) | z | | Redshift (0.18, 0.27, 0.42) (src.redshift) (REDSHIFT_HC) |
| | (1) | Lum | | Number of luminosities for a given set (stat.fit.param) (FIT_PARAM_VALUE) |
| | (2) | l | | Relative luminosity L/L_Edd (Note 1)
(phys.luminosity;arith.ratio) (PHYS_LUMINOSITY_RATIO) |
ALL cols | | | |
| | (2) | grad/g | | Ratio of the radiation acceleration to gravity (stat.fit.param) (FIT_PARAM_VALUE) |
| | (2) | Teff | keV | Effective temperature (phys.temperature.effective) (PHYS_TEMP_EFFEC) |
| | (2) | fc1 | | Color correction factor fc,1 (Note 2)
(arith.factor;phot.flux) (PHOT_SPHOT_CORR-FACT) |
| | (2) | fc2 | | Color correction factor fc,2 (Note 2)
(arith.factor;phot.flux) (PHOT_SPHOT_CORR-FACT) |
| | (2) | fc3 | | Color correction factor fc,3 (Note 2)
(arith.factor;phot.flux) (PHOT_SPHOT_CORR-FACT) |
| | (2) | fc4 | | Color correction factor fc,4 (Note 2)
(arith.factor;phot.flux) (PHOT_SPHOT_CORR-FACT) |
| | (2) | fc5 | | Color correction factor fc,5 (Note 2)
(arith.factor;phot.flux) (PHOT_SPHOT_CORR-FACT) |
| | (2) | w*fc1+4 | | Product of dilution factor and (fc1)4 (arith.factor;pos.distance) (PHYS_PLASMA_PARAM) |
| | (2) | w*fc2+4 | | Product of dilution factor and (fc2)4 (arith.factor;pos.distance) (PHYS_PLASMA_PARAM) |
| | (2) | w*fc3+4 | | Product of dilution factor and (fc3)4 (arith.factor;pos.distance) (PHYS_PLASMA_PARAM) |
| | (3+4) | E | keV | Photon energy (em.energy) (AT_ENERGY_POTENTIAL) |
| | (3) | F(0001) | mW/m2/keV | Flux FE for l=0.001 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0003) | mW/m2/keV | Flux FE for l=0.003 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
ALL cols | | | |
| | (3) | F(0010) | mW/m2/keV | Flux FE for l=0.01 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0030) | mW/m2/keV | Flux FE for l=0.03 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0050) | mW/m2/keV | Flux FE for l=0.05 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0070) | mW/m2/keV | Flux FE for l=0.07 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0100) | mW/m2/keV | Flux FE for l=0.1 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0150) | mW/m2/keV | Flux FE for l=0.15 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0200) | mW/m2/keV | Flux FE for l=0.2 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0300) | mW/m2/keV | Flux FE for l=0.3 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0400) | mW/m2/keV | Flux FE for l=0.4 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0500) | mW/m2/keV | Flux FE for l=0.5 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0550) | mW/m2/keV | Flux FE for l=0.55 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0600) | mW/m2/keV | Flux FE for l=0.6 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0650) | mW/m2/keV | Flux FE for l=0.65 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
ALL cols | | | |
| | (3) | F(0700) | mW/m2/keV | Flux FE for l=0.7 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0750) | mW/m2/keV | Flux FE for l=0.75 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0800) | mW/m2/keV | Flux FE for l=0.8 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0850) | mW/m2/keV | Flux FE for l=0.85 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0900) | mW/m2/keV | Flux FE for l=0.9 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0950) | mW/m2/keV | Flux FE for l=0.95 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(0980) | mW/m2/keV | Flux FE for l=0.98 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1000) | mW/m2/keV | Flux FE for l=1.0 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1020) | mW/m2/keV | Flux FE for l=1.02 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1040) | mW/m2/keV | Flux FE for l=1.04 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1060) | mW/m2/keV | Flux FE for l=1.06 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1080) | mW/m2/keV | (n) Flux FE for l=1.08 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
| | (3) | F(1100) | mW/m2/keV | (n) Flux FE for l=1.10 (Note 1)
(phot.flux;em.X-ray) (PHOT_FLUX_X) |
ALL cols | | | |
| | (4) | I(0001,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.001 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0001,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.001 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0001,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.001 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0003,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.003 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0003,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.003 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0003,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.003 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0010,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.01 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0010,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.01 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0010,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.01 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0030,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.03 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0030,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.03 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0030,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.03 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0050,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.05 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(0050,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.05 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0050,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.05 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0070,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.07 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0070,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.07 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0070,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.07 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0100,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0100,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0100,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0150,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.15 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0150,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.15 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0150,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.15 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0200,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.2 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0200,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.2 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(0200,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.2 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0300,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.3 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0300,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.3 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0300,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.3 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0400,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.4 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0400,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.4 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0400,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.4 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0500,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.5 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0500,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.5 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0500,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.5 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0550,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.55 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0550,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.55 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0550,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.55 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(0600,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.6 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0600,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.6 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0600,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.6 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0650,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.65 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0650,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.65 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0650,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.65 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0700,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.7 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0700,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.7 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0700,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.7 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0750,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.75 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0750,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.75 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0750,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.75 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0800,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.8 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(0800,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.8 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0800,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.8 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0850,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.85 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0850,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.85 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0850,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.85 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0900,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.9 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0900,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.9 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0900,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.9 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0950,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.95 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0950,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.95 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0950,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.95 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0980,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=0.98 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(0980,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=0.98 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(0980,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=0.98 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1000,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=1.0 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1000,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=1.0 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1000,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=1.0 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1020,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=1.02 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1020,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=1.02 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1020,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=1.02 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1040,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=1.04 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1040,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=1.04 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1040,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=1.04 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1060,0.113) | mW/m2/keV/sr | IEi at cosi=0.113 for l=1.06 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1060,0.5) | mW/m2/keV/sr | IEi at cosi=0.5 for l=1.06 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1060,0.887) | mW/m2/keV/sr | IEi at cosi=0.887 for l=1.06 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |
| | (4) | I(1080,0.113) | mW/m2/keV/sr | (n) IEi at cosi=0.113 for l=1.08 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1080,0.5) | mW/m2/keV/sr | (n) IEi at cosi=0.5 for l=1.08 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1080,0.887) | mW/m2/keV/sr | (n) IEi at cosi=0.887 for l=1.08 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1100,0.113) | mW/m2/keV/sr | (n) IEi at cosi=0.113 for l=1.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1100,0.5) | mW/m2/keV/sr | (n) IEi at cosi=0.5 for l=1.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
| | (4) | I(1100,0.887) | mW/m2/keV/sr | (n) IEi at cosi=0.887 for l=1.1 (Note 1)
(phot.flux) (SPECT_FLUX_VALUE) |
ALL cols | | | |