Suggested: Dimensionless, M_\odot, km s-1, K, keV
Exclude
Name/Symbol Condition
Name: Component
Mean: 353 ± 2.87e+03
Median: 2.15
Range: -1.04e+03 ‒ 4.15e+04
391 results.
arXiv Name Symbol Parsed Bound
astro-ph/9310025 🔍 (source) tensor component n
0.85
Lower
astro-ph/9503123 🔍 (source) mass of the unknown binary component
8.7 +6.300000000000001-6.299999999999999 M_\odot
astro-ph/9608030 🔍 (source) hard-component temperatures T _ { hard }
3.0
Lower
astro-ph/9710078 🔍 (source) hot component \Omega _ { h }
0.2
Upper
astro-ph/9710114 🔍 (source) off-pulse spectral component
126.0 ± 124.0 keV
astro-ph/9710322 🔍 (source) component m _ { R }
25.5 ± 0.4
astro-ph/9804309 🔍 (source) absolute magnitude of the constant component M _ { B _ { rest } }
-17.5 ± 0.3
astro-ph/9805111 🔍 (source) color component
450.0 ± 50.0 Myr
astro-ph/9805151 🔍 (source) radial velocity component v _ { LSR }
16.0 km s-1
astro-ph/9806396 🔍 (source) equation of state parameter for the unknown component \alpha _ { x }
-0.55
Upper
astro-ph/9811029 🔍 (source) limb-to-limb separation of the two components
0.151 ± 0.069 m as
astro-ph/9811029 🔍 (source) masses of the two components
1.326 ± 0.016 M_\odot
astro-ph/9811029 🔍 (source) masses of the two components
0.819 ± 0.009 M_\odot
astro-ph/9812183 🔍 (source) absorption component
987.0 ± 1.0 km s-1
astro-ph/9902159 🔍 (source) component \Delta N _ { H }
4.9e+21 +3.4e+21-1.3e+21 cm-2
astro-ph/9902376 🔍 (source) broad component T
30.0
astro-ph/9902376 🔍 (source) narrow component T
15.0
astro-ph/9905207 🔍 (source) masses of the two components
1.17 ± 0.018 M_\odot
astro-ph/9905207 🔍 (source) masses of the two components
1.223 ± 0.021 M_\odot
astro-ph/9907153 🔍 (source) soft component kT
0.38 ± 0.03 keV
astro-ph/9908060 🔍 (source) components D / H
1.5000000000000002e-05
astro-ph/9910087 🔍 (source) velocity component
-40.0 km s-1
astro-ph/9910087 🔍 (source) metal poor component [ Fe / H ]
-0.7
Upper
astro-ph/9910245 🔍 (source) masses of the two components
1.435 ± 0.023 M_\odot
astro-ph/9910245 🔍 (source) masses of the two components
1.409 ± 0.02 M_\odot
astro-ph/9911142 🔍 (source) thermal kinetic temperatures of the two narrow components T _ { k }
103.0 ± 10.0 K
astro-ph/9911142 🔍 (source) thermal kinetic temperatures of the two narrow components
297.0 ± 3.0
Upper
astro-ph/9912159 🔍 (source) gaussian component
0.98 ± 0.2 m as
astro-ph/9912283 🔍 (source) masses of the two binary components M _ { accretor }
0.6 ± 0.2 M_\odot
astro-ph/0001512 🔍 (source) Component
264.0
Upper
astro-ph/0001512 🔍 (source) Component
252.0
Upper
astro-ph/0001512 🔍 (source) Component l
271.0
Upper
astro-ph/0001512 🔍 (source) Component l
276.0
Upper
astro-ph/0003113 🔍 (source) oscillatory component of period
0.5 Gyr
astro-ph/0005026 🔍 (source) Component masses M _ { A }
0.286 ± 0.006 M_\odot
astro-ph/0005026 🔍 (source) mean component magnitude difference \Delta V
3.27 ± 0.1
astro-ph/0007136 🔍 (source) time delay between the two QSO components \Delta t
51.0 ± 4.0 day
astro-ph/0012163 🔍 (source) mass of the primary component of the binary system M
2.0 M_\odot
astro-ph/0101052 🔍 (source) two distinct components
5.5 ± 4.5 cm-3
astro-ph/0104372 🔍 (source) average component speed
0.45 ± 0.03
astro-ph/0105291 🔍 (source) space velocity components relative U
-9.8 ± 1.2
astro-ph/0105292 🔍 (source) mean space velocity components for the Association relative to the Sun U
-3.8 ± 1.2
astro-ph/0109145 🔍 (source) component of the diffuse photon flux I _ { \gamma } / I _ { CR }
54.0
Lower
astro-ph/0111347 🔍 (source) soft component kT
0.72 ± 0.13 keV
astro-ph/0112164 🔍 (source) soft component \gamma
1.5 ± 0.3
astro-ph/0112164 🔍 (source) soft component \gamma
2.7 ± 0.4
astro-ph/0203160 🔍 (source) plasma components kT _ { e }
0.55
astro-ph/0203160 🔍 (source) plasma components kT _ { e }
0.65
astro-ph/0203160 🔍 (source) plasma components kT _ { e }
3.5
astro-ph/0203396 🔍 (source) plasma components
0.18 ± 0.04 keV
astro-ph/0204147 🔍 (source) intensity of the power-law component
2.1499999999999997e-11 ± 2.6e-12 erg day cm-2 s-1
astro-ph/0205167 🔍 (source) warm component T _ { w } ^ { b }
148.0 K
astro-ph/0206351 🔍 (source) blackbody component kT
0.075 keV
astro-ph/0208166 🔍 (source) power-law component \Gamma
1.44 ± 0.01
astro-ph/0208166 🔍 (source) blackbody component kT
1.05 ± 0.01 keV
astro-ph/0209351 🔍 (source) power law component f ^ {
-1.63
astro-ph/0212214 🔍 (source) cD stellar component
10.0
Lower
astro-ph/0212522 🔍 (source) metal-poor component \langle [ Fe / H ] \rangle
-1.4 ± 0.02
astro-ph/0301027 🔍 (source) plasma components
0.18 ± 0.04 keV
astro-ph/0303102 🔍 (source) velocity component offset
-40.0 km s-1
astro-ph/0303251 🔍 (source) two gas components
0.86 ± 0.04 keV
astro-ph/0304133 🔍 (source) Compton reflection component R
0.8 +0.19999999999999996-0.20000000000000007
astro-ph/0304261 🔍 (source) Compton reflection component \Omega / 2 \pi
0.21 +0.05-0.04
astro-ph/0304535 🔍 (source) luminosity of the X–ray component L _ { x }
3.5e+30 erg s-1
astro-ph/0305097 🔍 (source) dark energy component \Omega _ { \Lambda }
0.0
astro-ph/0305230 🔍 (source) warm component temperature
29.0 K
astro-ph/0305230 🔍 (source) warm component temperature
9.0
Upper
astro-ph/0306341 🔍 (source) cool component luminosity
7e+43 erg s-1
astro-ph/0309215 🔍 (source) velocity component \sigma _ { 1 D }
294.0 km s-1
astro-ph/0309442 🔍 (source) bulge component amounts
0.00099 +0.00047000000000000004-0.00021 ph cm-2 s-1
astro-ph/0311434 🔍 (source) soft component n _ { SN 78 K } ^ { Si } / n _ { solar } ^ { Si }
3.2 +1.8-1.9
astro-ph/0402630 🔍 (source) component \dot { M } _ { halo RGs }
1.4e-05 M_\odot kpc-2 yr-1
astro-ph/0402630 🔍 (source) component \dot { M } _ { thick disk RGs }
5.4000000000000005e-05 M_\odot kpc-2 yr-1
astro-ph/0405300 🔍 (source) main component
0.8 pc
astro-ph/0405454 🔍 (source) dark energy component \Omega _ { M }
1.0
astro-ph/0406312 🔍 (source) cool component T
1.8 keV
astro-ph/0406312 🔍 (source) hot component T
8.0 keV
astro-ph/0406557 🔍 (source) scale of the random component
15.0 ± 10.0 pc
astro-ph/0407022 🔍 (source) dark matter component \Omega _ { m }
0.26 ± 0.08000000000000002
astro-ph/0407334 🔍 (source) mass of each component
0.052000000000000005 ± 0.018000000000000002 M_\odot
astro-ph/0408417 🔍 (source) soft inner component
25.0
Upper
astro-ph/0408417 🔍 (source) hotter outer component
25.0
Lower
astro-ph/0409663 🔍 (source) temperature component T
1500000.0 K
astro-ph/0411274 🔍 (source) plasma component kT
0.3 keV
astro-ph/0501122 🔍 (source) velocity outflow component
-1040.0 km s-1
astro-ph/0502250 🔍 (source) masses of the two components
1.416 ± 0.0049 M_\odot
astro-ph/0502250 🔍 (source) masses of the two components
1.374 ± 0.0045 M_\odot
astro-ph/0503620 🔍 (source) radial component V _ { r }
-75.0 ± 44.0 km s-1
astro-ph/0503620 🔍 (source) tangential component V _ { t }
144.0 ± 50.0 km s-1
astro-ph/0505141 🔍 (source) Apparent speeds of jet components relative
0.028 c
Upper
astro-ph/0505340 🔍 (source) gas component v _ { rel }
2.187
astro-ph/0505340 🔍 (source) gas component
13.0 km s-1
astro-ph/0507604 🔍 (source) disk component
1.3 ± 0.1 kpc
astro-ph/0507604 🔍 (source) disk component
4.6 ± 0.3 kpc
astro-ph/0508331 🔍 (source) component masses
0.582 ± 0.051 M_\odot
astro-ph/0508331 🔍 (source) component masses
0.699 ± 0.064
astro-ph/0509087 🔍 (source) age of this component and of the other
-1.4
Lower
astro-ph/0509146 🔍 (source) Compton-reflection component parameter R
0.2
Upper
astro-ph/0510023 🔍 (source) plasma component kT _ { e }
3.0 keV
Lower
astro-ph/0511236 🔍 (source) outflow velocity component
-1040.0 km s-1
astro-ph/0512072 🔍 (source) masses , radii , and effective temperatures of the binary components M _ { Aa }
1.282 ± 0.015 M_\odot
astro-ph/0512319 🔍 (source) dipolar magnetic component B _ { p }
23.0
Lower
astro-ph/0601100 🔍 (source) radii of the two components
16.0 ± 1.0 s
astro-ph/0601547 🔍 (source) radial component V _ { r }
79.0 ± 6.0 km s-1
astro-ph/0601547 🔍 (source) tangential component V _ { t }
198.0 ± 50.0 km s-1
astro-ph/0603002 🔍 (source) colour temperature of the cold component slightly
17.3 K
Upper
astro-ph/0603002 🔍 (source) colour temperature of the cold component slightly
15.8
astro-ph/0603218 🔍 (source) mass of the stellar component
1.5 ± 0.5 Gyr
astro-ph/0603561 🔍 (source) component M _ { 1 }
8.2 M_\odot
astro-ph/0606021 🔍 (source) main ionisation component v
-610.0 km s-1
astro-ph/0606656 🔍 (source) cool component
6400000.0 K
astro-ph/0606752 🔍 (source) power-law component \Gamma
2.76
astro-ph/0608143 🔍 (source) masses of the binary components
0.07050000000000001 +0.006499999999999992-0.006500000000000006 M_\odot
astro-ph/0610320 🔍 (source) power-law component \Gamma
2.76
astro-ph/0610347 🔍 (source) H - K ) -color temperature of the dust component T
1635.0 K
astro-ph/0612705 🔍 (source) radial component V _ { r }
-31.8 ± 1.7 km s-1
astro-ph/0612705 🔍 (source) tangential component V _ { t }
196.0 ± 29.0 km s-1
astro-ph/0702658 🔍 (source) radius of the O component R _ { O }
7.1 R_\odot
astro-ph/0703579 🔍 (source) component masses M _ { A }
0.529 ± 0.035 M_\odot
0705.1747 🔍 (source) spectral index of the quiescent component \alpha
0.37 ± 0.34
0706.2376 🔍 (source) component masses
1.54 ± 0.14
0706.2376 🔍 (source) component masses
1.332 ± 0.097 M_\odot
0706.2745 🔍 (source) expansion velocities of the polar components v
5600.0 ± 1100.0 km s-1
0707.2193 🔍 (source) individual masses of the components M _ { A }
0.64 M_\odot
0707.2950 🔍 (source) emission component EW
60.0 eV
0710.2697 🔍 (source) young component age
20.0 +30.0-10.0 Myr
0711.1521 🔍 (source) Gaussian velocity components $V _ { \mathrm { LSR } } $ }
-20.0
Upper
0711.1521 🔍 (source) Gaussian velocity components $V _ { \mathrm { LSR } } $ }
35.0 km s-1
0711.1521 🔍 (source) Gaussian velocity components $V _ { \mathrm { LSR } } $ }
-100.0
0711.2955 🔍 (source) component T
7342.0 ± 14.0 K
0711.4773 🔍 (source) thermal component kT
1.05 +0.3999999999999999-0.4 keV
0711.4773 🔍 (source) power-law components \Gamma
2.7 +0.19999999999999973-0.20000000000000018
0801.2172 🔍 (source) dust component
0.0001 M_\odot
0801.3753 🔍 (source) radius of the components R _ { 1 }
10.3 ± 1.3 R_\odot
0801.3753 🔍 (source) component temperatures
0.3
0801.4915 🔍 (source) horizontal field component
2.0
0804.1641 🔍 (source) curved component
0.25
0805.0312 🔍 (source) radii of both components appear
0.59 M_\odot
0805.1232 🔍 (source) component kT _ { X }
2.75 ± 0.25 keV
0805.1232 🔍 (source) soft component kT _ { X }
0.5 keV
0805.4289 🔍 (source) mass ratio of the binary components q _ { 1 }
0.4
0807.2653 🔍 (source) keV surface brightness of the non-thermal component
5e-16 erg cm-2 s-1
Upper
0811.0069 🔍 (source) masses of the components m _ { x }
5.0 M_\odot
0901.4227 🔍 (source) thermal component \Delta \gamma
1.5
0902.2804 🔍 (source) temperature of the hot dust component M _ { d }
0.002 M_\odot
0902.3307 🔍 (source) reflection component R
2.0
Lower
0902.4356 🔍 (source) masses of the binary components M _ { pri }
12.6 ± 3.2 M_\odot
0903.1357 🔍 (source) mass of the tertiary component M _ { 3 }
0.072 M_\odot
0903.3251 🔍 (source) component masses
0.091 +0.01-0.007 M_\odot
0903.3251 🔍 (source) component masses
0.105 +0.029-0.017 M_\odot
0903.3566 🔍 (source) component effective temperatures
5875.0 ± 100.0 K
0903.3566 🔍 (source) component effective temperatures
5900.0 ± 100.0 K
0904.3419 🔍 (source) masses of the components m _ { x }
5.3 M_\odot
0906.3187 🔍 (source) distance of this component
280.0 +40.0-50.0 pc
0906.3744 🔍 (source) hot inner dust component T _ { gr }
150.0 K
0906.4365 🔍 (source) component
0.38 ± 0.02
0907.2235 🔍 (source) star formation rates of LAE components
5.0 M_\odot yr-1
0908.2841 🔍 (source) interstellar polarization component Q _ { ISP }
0.0 ± 0.1
0909.1358 🔍 (source) non-thermal inverse Compton component
2.6e-11 erg s-1 cm-2
0909.4533 🔍 (source) absolute masses and radii of the components M _ { 1 }
1.193 ± 0.01 M_\odot
0910.1512 🔍 (source) V component of the Sun ’ s peculiar velocity
11.0 km s-1
0910.2986 🔍 (source) dust component T _ { D }
70.0 K
0910.5176 🔍 (source) component separation \rho
42.0 ± 2.0 m as
0912.0127 🔍 (source) power-law component \Gamma
1.5 ± 0.5
1001.3414 🔍 (source) narrow absorption component
-144.0 km s-1
1003.2910 🔍 (source) distance between the two outer components
0.28 ± 0.13 m as
1003.3031 🔍 (source) type-Ia component
1.6000000000000003e-13 S N yr-1 M_\odot-1
1003.6114 🔍 (source) velocity component
106.0 km s-1
1004.0700 🔍 (source) geometric component
3.4 ± 0.3
1004.0700 🔍 (source) geometric component
1.5 ± 0.3 c-1
1004.0700 🔍 (source) geometric component
5.8 ± 0.4
1004.2302 🔍 (source) fraction of massive star component
0.37 ± 0.13
1005.2563 🔍 (source) component
60.0 K
1006.1396 🔍 (source) mass of the lower-mass component
0.04 ± 0.01 M_\odot
1006.4244 🔍 (source) mass of the new component m _ { e }
14.6 ± 1.7
1007.2940 🔍 (source) { O } component \alpha _ { O }
1.05 ± 0.34
1007.4874 🔍 (source) anti rotation direction component
12.9 ± 2.9 km s-1
1007.5357 🔍 (source) distance of component
2.4 ± 0.15 kpc
1008.1560 🔍 (source) source component expansion speed v _ { exp }
0.005 c
1008.3067 🔍 (source) metal-rich component [ \mathrm { Fe / H }
-2.0
Lower
1009.0344 🔍 (source) masses of the binary components
0.1 ± 0.01 M_\odot
1009.0344 🔍 (source) masses of the binary components
0.09 ± 0.01 M_\odot
1010.0191 🔍 (source) masses of the components M _ { RD }
0.18 M_\odot
1010.5276 🔍 (source) lag between the two components \langle \Delta v \rangle
46.0 ± 3.9 km s-1
1011.1739 🔍 (source) temperature of the secondary component T _ { 2 }
33500.0 K
1011.4346 🔍 (source) PL component \Gamma
1.35 +0.56-0.86 +0.11-0.1
1011.5671 🔍 (source) masses of the binary components
0.8 +0.19999999999999996-0.20000000000000007 M_\odot
1101.0189 🔍 (source) angle of the reflection component \Omega / 2 \pi
0.75 +0.3500000000000001-0.35
1101.2499 🔍 (source) component masses M _ { 2 }
0.3 ± 0.07 M_\odot
1103.0583 🔍 (source) temperature of the cold dust component T _ { d }
24.0 +7.0-5.0 K
1103.2020 🔍 (source) component m _ { 3 }
0.097 M_\odot
1103.2094 🔍 (source) minimum depth from individual components
16.0 ± 0.9 pc
1104.0205 🔍 (source) spectral components \alpha
-0.25
Lower
1104.0342 🔍 (source) semi-amplitude of the cool component
0.045 km s-1
1104.0342 🔍 (source) hotter component
0.58 km s-1
1105.2623 🔍 (source) filling factor component T _ { k }
190.0 ± 30.0 K
1105.3954 🔍 (source) the brightest component
1.66 ± 0.79 kpc
1105.3954 🔍 (source) the brightest component \langle r _ { e } \rangle
50.0
1108.0335 🔍 (source) primary component P
0.246137 day
1108.2724 🔍 (source) tangential component v _ { t _ { G } }
265.2 ± 129.4 km s-1
1109.2055 🔍 (source) component masses M _ { 1 }
0.395 ± 0.002 M_\odot
1109.6323 🔍 (source) age of the youngest component
145.0 +450.0-70.0 Myr
1111.2376 🔍 (source) total mass of the warm dust component
0.013000000000000001
Lower
1111.2346 🔍 (source) power-law component \Gamma
1.56 ± 0.01
1111.4029 🔍 (source) bulk component [ C i ] / ^ { 13 } \mathrm { CO }
0.45
1111.4961 🔍 (source) intensity of the line-of-sight component of the magnetic
1.2
1111.6855 🔍 (source) total column density of each component N _ { H }
2.5e+22 ± 3e+21 cm-2
1111.6855 🔍 (source) total column density of each component N _ { H }
6.900000000000001e+22 ± 4.3e+22 cm-2
1111.6855 🔍 (source) total column density of each component N _ { H }
5.4e+22 ± 1.2e+22 cm-2
1111.6855 🔍 (source) total column density of each component N _ { H }
1.8e+22 ± 5e+21 cm-2
1112.2708 🔍 (source) radii of either component
60.0 km
Upper
1112.3656 🔍 (source) restframe line width of the extended component
21.0 ± 7.0
1112.3656 🔍 (source) restframe line width of the extended component
52.0 ± 4.0
1201.1019 🔍 (source) metal-poor component [ Fe / H ]
-0.5
Upper
1201.1019 🔍 (source) metal-rich component < [ Fe/H ]
0.3
Upper
1202.1548 🔍 (source) mass of this molecular component
34000.0 M_\odot
1202.3196 🔍 (source) A third weak emission component T _ { 3 }
0.8 keV
1204.1264 🔍 (source) massive cold dust component M _ { d }
500000.0 M_\odot
1204.2831 🔍 (source) soft excess component
75.0 ± 23.0
1205.4188 🔍 (source) component
785.0 ± 175.0 km s-1
1205.6021 🔍 (source) temperature component
10.0 MK
1205.6021 🔍 (source) temperature component
60.0 MK
Upper
1205.6021 🔍 (source) temperature component
40.0
1206.4014 🔍 (source) oldest age component age
2.0 Gyr
Lower
1206.5751 🔍 (source) age of the large-scale component
300.0 Myr
1207.5041 🔍 (source) velocity dispersion of the narrow component range
3.4
Lower
1207.5041 🔍 (source) velocity dispersion of the narrow component range
8.6 km s-1
1207.5041 🔍 (source) velocity dispersion of the narrow component range
6.5 ± 1.5 km s-1
1207.5041 🔍 (source) broad component
10.1
Lower
1207.5041 🔍 (source) broad component
24.3 km s-1
1207.5041 🔍 (source) broad component
16.8 ± 4.3 km s-1
1207.6235 🔍 (source) north-western cluster component M ( { < } 75 { kpc } )
56000000000000.0 ± 5000000000000.0 M_\odot
1207.6235 🔍 (source) north-western cluster component
22500000000000.0 ± 7500000000000.0 M_\odot
1208.5533 🔍 (source) selectron component to stau component c _ { e }
2e-11
Lower
1208.5882 🔍 (source) flux ratio of the binary components
2.2
1209.0290 🔍 (source) components
1.26 ± 0.07 M_\odot
1209.0456 🔍 (source) rotational lag of the thick disk component relative LSR v _ { thick , lag }
49.0 km s-1
1209.0891 🔍 (source) average number of components in the absorption
6.0 +1.0-1.25
1209.6438 🔍 (source) soft X-ray component kT
1.0 keV
1210.3496 🔍 (source) mass of the neutral atomic component
330000000.0 M_\odot
1210.3496 🔍 (source) mass of the neutral atomic component
120000000.0 M_\odot
Upper
1210.4285 🔍 (source) mass of the primary component
0.92 ± 0.08 M_\odot
1210.4285 🔍 (source) mass of the primary component
0.58 ± 0.06 M_\odot
1210.6039 🔍 (source) tangential components V _ { rad }
167.9 ± 2.8
1210.7209 🔍 (source) extra component
2.7 GeV
1211.4823 🔍 (source) radial component of the merger velocity \Delta v _ { r }
2650.0 km s-1
1211.5064 🔍 (source) excitation component \mathrm { OH ^ { + } / H _ { 2 } O ^ { + }
7.5 ± 2.5
1212.1510 🔍 (source) separation of the components
23.4 R_\odot
1301.5072 🔍 (source) frequency dependence of the size of the scintillating component d
-0.64
1302.2825 🔍 (source) emissivity index of the cold dust component \beta _ { c }
1.47
1303.4323 🔍 (source) the Comptonization component \Gamma
2.0
1304.1775 🔍 (source) component mass
1.0
1304.1775 🔍 (source) component mass
-25.0 M_\odot
1305.1911 🔍 (source) absolute masses of the binary components M _ { 1 }
22.5 ± 1.0 M_\odot
1306.0330 🔍 (source) mass of the secondary component Ab
14.0 ± 3.0 M_\odot
1306.5482 🔍 (source) temperature of the secondary component T _ { 2 }
41500.0 K C
1306.6077 🔍 (source) rotationally excited component n _ { H }
7600.0 cm-3
1307.3447 🔍 (source) ordered component
3.5 ± 1.2
1307.3447 🔍 (source) ordered component
2.6 ± 0.8
1308.4160 🔍 (source) temperature component T _ { \mathrm { rot } } Â
950.0 ± 50.0 K
1310.2107 🔍 (source) masses of the two components
0.87 ± 0.05 M_\odot
1310.2107 🔍 (source) masses of the two components
0.58 ± 0.03 M_\odot
1310.5266 🔍 (source) mass of the primary component
1.204 ± 0.004 M_\odot
1310.5266 🔍 (source) mass of the primary component
0.45 ± 0.006 M_\odot
1310.6569 🔍 (source) time delay between both components of the system
72.0 ± 22.0 day
1312.4500 🔍 (source) mass of the secondary component
0.29 ± 0.03 M_\odot
1312.5597 🔍 (source) optical component K _ { opt }
11.0 ± 6.0
Upper
1401.4190 🔍 (source) component masses M _ { BH }
6.4 ± 0.6 M_\odot
1401.4486 🔍 (source) mass-outflow rate of the strongest absorption component \dot { M } _ { abs }
1.1 +0.9-0.7 M_\odot
1401.5063 🔍 (source) Galactocentric radial velocity component
477.0 km s-1
1401.5377 🔍 (source) solar motion component in the direction of Galactic rotation V _ { \odot }
14.6 ± 5.0 km
1402.4026 🔍 (source) distance of component d _ { I }
200.0 +100.0-60.0
1402.5614 🔍 (source) total mass of the molecular component
4.0
Lower
1403.2722 🔍 (source) component kT
15.3 keV
1406.6345 🔍 (source) component t
9.0
Upper
1407.7926 🔍 (source) projected separation between the lens components
0.8 ± 0.08 AU
1408.1644 🔍 (source) power-law component \Gamma
1.7
1409.2184 🔍 (source) temperature difference between the components \Delta T
206.0 K
1409.6664 🔍 (source) soft thermal component kT
0.08 keV
1409.7065 🔍 (source) stellar components of the galaxies to surface brightness \mu _ { g }
32.0 mag
1411.0682 🔍 (source) frequency of tertiary components
0.16 ± 0.03
1411.4632 🔍 (source) narrow-line component CO / HCN
40.0 ± 5.0
1412.0400 🔍 (source) brightness temperature of the radio component
14000000.0 K
1412.1592 🔍 (source) warm component fraction
0.25
1412.1592 🔍 (source) warm component fraction r _ { warm }
0.5
1502.05520 🔍 (source) Galactic radial velocity component U
13.23 ± 8.28 km s-1
1502.05520 🔍 (source) Galactic rotational velocity component V
-55.56 ± 22.13 km s-1
1504.06628 🔍 (source) masses of the components M _ { 1 }
1.28 ± 0.07 M_\odot
1505.01592 🔍 (source) components of velocity U
-9.8 km s-1
Upper
1505.02860 🔍 (source) effective temperatures for the two stellar components T _ { eff , 1 }
3190.0 ± 100.0 K
1505.04124 🔍 (source) mass of the secondary component M _ {
2.0
1505.08060 🔍 (source) components
15.0 km s-1
Lower
1506.03084 🔍 (source) bulge component n
3.0
1506.08848 🔍 (source) luminosities of each component
1305.0 +180.0-135.0
1507.03601 🔍 (source) ages of the components M _ { A }
1.35 ± 0.05 M_\odot
1509.03736 🔍 (source) gas component
250.0 AU
1510.07060 🔍 (source) mass of the binary components R _ { 1 }
1.24 ± 0.01 R_\odot
1510.08994 🔍 (source) rotation periods of both components P _ { A }
12.4 day
1512.08793 🔍 (source) rotation periods of the two components P _ { phot }
4.4351 day
1601.03377 🔍 (source) mass of each binary component
73.0 +20.0-17.0
1602.02806 🔍 (source) masses of the two massive components
12.02 ± 0.13
1602.02806 🔍 (source) masses of the two massive components
10.58 ± 0.18 M_\odot
1602.06482 🔍 (source) width of the narrow component abruptly
38.8 ± 0.4 km s-1
1602.06482 🔍 (source) width of the narrow component abruptly
33.1 ± 0.2 km s-1
Lower
1604.01489 🔍 (source) mass fraction of the warm component
0.47
Upper
1605.01665 🔍 (source) mass component
1.807 +0.081-0.132
1605.01665 🔍 (source) mass component
1.393 +0.031-0.029 M_\odot
1605.01665 🔍 (source) mass component
0.064 +0.064-0.025 M_\odot
1606.01210 🔍 (source) component masses
30.0 +3.0-4.0 M_\odot
1606.01210 🔍 (source) component masses
35.0 +5.0-3.0 M_\odot
1607.04351 🔍 (source) masses for the two components m ( A )
0.1225 ± 0.0043 M_\odot
1607.04670 🔍 (source) disk component D / T
0.25 ± 0.04999999999999999
1607.06322 🔍 (source) stellar component M
0.09 M_\odot
Lower
1607.07456 🔍 (source) component dimensionless spins
0.05
Upper
1608.03917 🔍 (source) component masses
1.603 ± 0.006 (stat) ± 0.016 (sys)
1609.00673 🔍 (source) ratio of the external toroidal and poloidal field components B _ { et } / B _ { ep }
1.0
1609.03154 🔍 (source) masses of the components M _ { 1 }
0.82 ± 0.06 M_\odot
1609.05911 🔍 (source) driving component b
0.4
Lower
1610.04417 🔍 (source) individual BH component masses
60.0 M_\odot
Upper
1610.06003 🔍 (source) matter component t
0.31
1610.07265 🔍 (source) mass fraction of warm dust component
185000000.0 ± 155000000.0 M_\odot
1610.09380 🔍 (source) Compton-thin component f _ { cov }
40.0
1611.01684 🔍 (source) mass ratio of the components q
0.69 ± 0.01
1612.05281 🔍 (source) luminosity of the thermal component due to the inner accretion disk L _ { d }
5.9e+45 erg s-1
1612.06452 🔍 (source) average velocity off-set of the two components
235.0 ± 10.5 km s-1
1701.04164 🔍 (source) component kT _ { e }
0.46 ± 0.03 keV
1702.02008 🔍 (source) polarization degree of the intrinsic component p _ { V }
1.1 ± 0.1 c-1
1702.04370 🔍 (source) BB component kT
0.47 keV
1705.10889 🔍 (source) components
9.63 ± 1.33
1706.09525 🔍 (source) cool component of the corona T
1.3 MK
Upper
1706.09525 🔍 (source) hotter component T
2.0 MK
Lower
1706.09424 🔍 (source) component \Delta t ( AD )
-155.5 ± 12.8 day
1709.08584 🔍 (source) component mass
36.0 M_\odot
1709.08777 🔍 (source) longitudinal component
-11.5 ± 2.5
1709.08777 🔍 (source) longitudinal component B _ { L }
11.1 ± 2.1
Upper
1710.08423 🔍 (source) component
125.0 ± 45.0 km s-1
1711.00407 🔍 (source) mass components of the log [ M _ { * } / M _ { \odot } ]
10.8 +0.07-0.14
1711.03092 🔍 (source) component kT
1.4
1801.03570 🔍 (source) masses and radii of the component stars M _ { A }
0.448 ± 0.011
1802.00242 🔍 (source) stellar component A _ { V }
4.3
1802.07658 🔍 (source) tangential component of the solar peculiar velocity V _ { \odot }
4.47 ± 0.8 km s-1
1803.01052 🔍 (source) dC component ( K
98.8 ± 10.7 km s-1
1804.06482 🔍 (source) velocity component
4.5 km s-1
1804.10485 🔍 (source) scale height of the thicker component
0.637 +0.056-0.036
1806.02283 🔍 (source) dipole component
13.0
Upper
1806.07452 🔍 (source) flatter component \alpha
-0.3 ± 0.07
1807.08574 🔍 (source) soft disk black-body component kT
0.45
1807.09284 🔍 (source) mass-to-light ratio of the three components M / L _ { V }
4.550000000000001 +0.14999999999999947-0.15000000000000036 M_\odot L_\odot-1
1807.11050 🔍 (source) normalization of the thermal component
3.6e+17 ± 3.4e+17 s cm-5
1808.06539 🔍 (source) polarization component parallel to the solar
0.16
Lower
1808.09243 🔍 (source) components T _ { 0 }
50000000000.0 K
Lower
1808.09243 🔍 (source) components
142000000000.0 +16000000000.0-19000000000.0 K
1808.09243 🔍 (source) components
400000000000.0 K
1808.10838 🔍 (source) tangential velocity components \sigma v _ { l * }
104.2 ± 3.0 km s-1
1809.07486 🔍 (source) dynamical masses of both components M _ { 1 }
4.288 ± 0.133 M_\odot
1809.10309 🔍 (source) effective component radii r _ { c }
0.8 ± 0.04 km
1810.00231 🔍 (source) POS component of the magnetic field
15.0 +8.0-3.0
1811.01875 🔍 (source) bulge stellar population component t
2.0 Gyr
Lower
1811.08570 🔍 (source) cool component
0.025 MK
1812.03370 🔍 (source) component ( \frac { \mathrm { m } _ { 1 } } { \mathrm { m } _ { 2 } }
0.1
1812.03298 🔍 (source) oldest stellar component t
10.0 Gyr
Lower
1812.05682 🔍 (source) horizontal dipole components of the anisotropy \delta _ { 0 h }
0.000916
1901.11088 🔍 (source) inner binary components m _ { 1 }
1.1 M_\odot
1905.10051 🔍 (source) pressure component P / k _ { B }
5.0
1906.02630 🔍 (source) projected separation between the two components
13.85 ± 0.16 AU
1906.06801 🔍 (source) component
224.0 K
1908.02719 🔍 (source) component ’ s effective temperatures
540.0 K
1908.02719 🔍 (source) component ’ s effective temperatures
24.0
1908.02719 🔍 (source) component ’ s effective temperatures
12930.0
1909.01923 🔍 (source) soft component kT
0.2 keV
1911.04702 🔍 (source) SED of AGN component \lambda _ { Edd }
0.7
2001.01761 🔍 (source) component masses range
1.12
Lower
2001.01761 🔍 (source) component masses range
2.52 M_\odot
2001.01761 🔍 (source) component masses range
1.45
Lower
2001.01761 🔍 (source) component masses range
1.88 M_\odot
2001.01761 🔍 (source) dimensionless component spin magnitudes
0.05
Upper
2002.00956 🔍 (source) individual component masses m _ { 1 }
2.02 +0.58-0.34
2002.09198 🔍 (source) disc component
20.3 +4.399999999999999-4.4
2002.09198 🔍 (source) N-component disc stability parameter Q _ { min }
3.7 ± 2.0
Lower
2003.07579 🔍 (source) electron temperature of the Comptonized component
2.9 ± 0.2 keV
2003.11730 🔍 (source) nonthermal component \Gamma
1.8
2004.09288 🔍 (source) dimensionless spin component
0.64
2004.09288 🔍 (source) dimensionless spin component
0.99
Upper
2004.12439 🔍 (source) ionization parameter and column density of the soft X-ray component \log \xi
3.4
2004.13756 🔍 (source) linear size of this component
4.0 kpc
2004.13757 🔍 (source) average polarization of the hotspot component
-45.0 c-1
Upper
2005.00023 🔍 (source) fraction of binaries with near-zero component spins
0.051 +0.156-0.048
2006.00010 🔍 (source) total column density of ionized gas in this velocity component N ( H ^ { + } )
3.28e+18 ± 3.3e+17 cm-2
2006.12711 🔍 (source) mass ratio of the binary components M _ { 2 } / M _ { 1 }
1.76 ± 0.05
2006.15084 🔍 (source) power-law component LF
43.3
Lower
2007.05664 🔍 (source) fraction of the hot component
40.0
Upper