2003ApJ...598..168S


Query : 2003ApJ...598..168S

2003ApJ...598..168S - Astrophys. J., 598, 168-177 (2003/November-3)

A method for black hole mass determination in accretion-powered X-ray sources.

SHRADER C.R. and TITARCHUK L.

Abstract (from CDS):

We describe a method for the determination of black hole masses based on information inferred from high-energy spectra. It is required that the spectral energy distribution consist of thermal and Comptonized components. One can then, in principle, infer the depth of the gravitational potential well for sources of known distance. The thermal component is inferred by the integration of a blackbody spectral form over the disk. We assume that the color temperature distribution in the disk has a specific shape given by the Shakura-Sunyaev disk model that goes to zero at the inner disk radius and at infinity and has a maximum at 4.2 RS. In this formulation there is only one parameter, the so-called color correction factor, relating the apparent temperature to effective temperature, which characterizes the thermal emission component. We have made use of improved Galactic black hole binary dynamical mass determinations to derive, in effect, an empirical calibration of this factor. We then present our analysis of observational data for representative objects of several classes: Galactic black hole X-ray binaries, narrow-line Seyfert galaxies (NLS1s), and ``ultraluminous'' extragalactic X-ray sources (ULXs). We then apply our mass determination calculation and present our results. We argue that this approach can potentially fill a void in the current knowledge of NLS1 and ULX properties and discuss how a deeper understanding of both classes has relevance to the broader issues of how cosmic black holes, beyond the stellar-mass realm, are formed and what is their overall mass distribution.

Abstract Copyright:

Journal keyword(s): Accretion, Accretion Disks - Black Hole Physics - Galaxies: Active - Galaxies: Quasars: General - Radiation Mechanisms: Nonthermal - Relativity

CDS comments: t.1 : XTE J1859-224 is a misprint for XTE J1859+226, t.2 : IRAS 17020-4544 and 20181-224 not identified, t.3 : PHL 1181 misprint for PHL 1811

Simbad objects: 40

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Number of rows : 40
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 Mrk 335 Sy1 00 06 19.5372339024 +20 12 10.617404076   14.19 13.85     ~ 1253 0
2 NGC 253 SyG 00 47 33.134 -25 17 19.68   8.03   6.94 8.1 ~ 3336 2
3 Mrk 1502 Sy1 00 53 34.9331107632 +12 41 35.929269132   14.41 14.03     ~ 1168 1
4 Ton S 180 Sy1 00 57 20.2040816832 -22 22 56.575212564   14.60 14.34 15.23   ~ 300 0
5 M 33 GiG 01 33 50.8965749232 +30 39 36.630403128 6.17 6.27 5.72     ~ 5838 1
6 RX J0148.5-2753 Sy1 01 48 30 -27 53.3           ~ 4 0
7 Mrk 586 Sy1 02 07 49.8619039200 +02 42 55.876760568   15.67 15.41     ~ 191 0
8 NGC 1313 AG? 03 18 16.046 -66 29 53.74   10.06 10.0 9.40 10.4 ~ 688 2
9 CXOU J033827.6-352648 XB* 03 38 27.6 -35 26 48           ~ 6 0
10 NGC 1399 BiC 03 38 29.083 -35 27 02.67 11.05 9.74 9.59 8.12   ~ 1570 1
11 [SGT2004] J033831.82-352603.8 XB* 03 38 31.82 -35 26 03.8           ~ 25 1
12 [SST2011] J034555.61+680455.3 ULX 03 45 55.612 +68 04 55.29           ~ 167 1
13 X LMC X-1 HXB 05 39 38.8284304464 -69 44 35.531553624   14.8 14.5     O8(f)p 640 2
14 2MASS J05594739-5026519 Sy1 05 59 47.3916612936 -50 26 52.025952120   15.18 14.97     ~ 289 1
15 LEDA 88588 Sy1 07 08 41.4886614696 -49 33 06.308921700   16.02 15.7 12.7   ~ 517 0
16 Mrk 110 Sy1 09 25 12.8479065576 +52 17 10.386311208   16.82 16.41     ~ 604 0
17 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5860 6
18 Z 212-25 Sy1 10 34 38.5982990352 +39 38 28.187042604   17.37 16.90     ~ 362 1
19 V* GU Mus HXB 11 26 26.5961559600 -68 40 32.877752952           K3V-K7V 715 1
20 Mrk 42 Sy1 11 53 41.7732361680 +46 12 42.174375120   16.24 15.45     ~ 209 0
21 NGC 4051 Sy1 12 03 09.6101337312 +44 31 52.682601288   11.08 12.92 9.94   ~ 2165 1
22 PB 3894 Sy1 12 14 17.6738687784 +14 03 13.182723144   14.46 14.19     ~ 821 0
23 NGC 4253 Sy1 12 18 26.5163572920 +29 48 46.531535472   14.34 13.57     ~ 1040 1
24 NGC 5408 EmG 14 03 20.907 -41 22 39.75   12.59   11.96 12.2 ~ 350 3
25 V* IL Lup HXB 15 47 08.2768672752 -47 40 10.284587760     11.96     ~ 494 1
26 V* V381 Nor HXB 15 50 58.6637920704 -56 28 35.258385000   17.95 16.6     K3III 1173 0
27 X Nor X-1 LXB 16 34 01.610 -47 23 34.80           ~ 517 0
28 [GHJ2008] 3 HXB 16 50 00.980 -49 57 43.60     11.89     K4V 398 0
29 V* V1033 Sco HXB 16 54 00.137 -39 50 44.90   15.20 14.2 16.14   F5IV 1887 1
30 V* V821 Ara HXB 17 02 49.3876391280 -48 47 23.087954544 16.20 16.30 15.5     ~ 2079 0
31 V* V2606 Oph CV* 17 42 40.030 -27 44 52.70     23.2     ~ 151 0
32 INTREF 866 LXB 17 55 28.6 -32 28 39     10.79     ~ 42 0
33 2XMM J180112.4-254436 LXB 18 01 12.40 -25 44 36.1           ~ 392 1
34 V* V4641 Sgr HXB 18 19 21.6343259256 -25 24 25.849595952     13.654   13.092 B9III 474 1
35 EXO 1846-031 LXB 18 49 17.1 -03 03 44           ~ 95 0
36 V* V406 Vul HXB 18 58 41.580 +22 39 29.40 15.00 15.65 15.31     G5V-K0V 379 0
37 Granat 1915+105 HXB 19 15 11.55576 +10 56 44.9052           ~ 2628 0
38 V* V404 Cyg HXB 20 24 03.8254458776 +33 52 01.962185735           G9/K0III/V 1277 0
39 PHL 1811 Sy1 21 55 01.5124437432 -09 22 24.349496808   13.9 16.8 14.1   ~ 185 1
40 UGC 12163 Sy1 22 42 39.3363009144 +29 43 31.302092640   14.86 14.16     ~ 697 1

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