2007A&A...463....1M


Query : 2007A&A...463....1M

2007A&A...463....1M - Astronomy and Astrophysics, volume 463, 1-9 (2007/2-3)

Re-condensation from an ADAF into an inner disk: the intermediate state of black hole accretion?

MEYER F., LIU B.F. and MEYER-HOFMEISTER E.

Abstract (from CDS):

Accretion onto galactic and supermassive black holes occurs in different modes, which are documented in hard and soft spectral states, commonly attributed to an advection-dominated flow (ADAF) inside a truncated disk and standard disk accretion, respectively. At the times of spectral transition an intermediate state is observed, for which the accretion flow pattern is still unclear. We analyze the geometry of the accretion flow when the mass flow rate in the disk decreases (soft/hard transition) and evaporation of gas into the coronal flow leads to disk truncation. We evaluate the physics of an advection-dominated flow affected by thermal conduction to a cool accretion disk underneath. We find re-condensation of gas from the ADAF into the underlying inner disk at distances from the black hole and at rates, that depend on the properties of the hot ADAF and vary with the mass accretion rate. This sustains an inner disk for longer than a viscous decay time after the spectral transition occurred, in accordance with the spectra that indicate cool gas in the neighborhood of the accreting black hole. The model allows us to understand why Cyg X-1 does not show hysteresis in the spectral state transition luminosity that is commonly observed for X-ray transient sources. Our results shed new light on the complex mass flow pattern during spectral state transition.

Abstract Copyright:

Journal keyword(s): accretion, accretion disks - black hole physics - X-rays: binaries - stars: individual: Cyg X-1

CDS comments: Paragraph 9 XTE J1500-564 is a misprint for XTE J1550-564. Paragraph 10. SWIFT J17335-0127 is a misprint for SWIFT J1753.5-0127

Simbad objects: 15

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Number of rows : 15
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 V* KV UMa HXB 11 18 10.7930420496 +48 02 12.314730120     12.25     K5V-M1V 802 0
2 V* V381 Nor HXB 15 50 58.6637920704 -56 28 35.258385000   17.95 16.6     K3III 1147 0
3 X Nor X-1 LXB 16 34 01.610 -47 23 34.80           ~ 494 0
4 [GHJ2008] 3 HXB 16 50 00.980 -49 57 43.60     11.89     K4V 389 0
5 V* V1033 Sco HXB 16 54 00.137 -39 50 44.90   15.20 14.2 16.14   F5IV 1853 1
6 V* V821 Ara HXB 17 02 49.3876391280 -48 47 23.087954544 16.20 16.30 15.5     ~ 2026 0
7 AX J1748.0-2829 LXB 17 48 05.060 -28 28 25.80     13.60     ~ 183 0
8 2MAXI J1753-013 LXB 17 53 28.2898766424 -01 27 06.256555272 15.30 16.73 16.46 16.15 15.64 ~ 347 0
9 INTREF 866 LXB 17 55 28.6 -32 28 39     10.79     ~ 42 0
10 2XMM J180112.4-254436 LXB 18 01 12.40 -25 44 36.1           ~ 385 1
11 V* V406 Vul HXB 18 58 41.580 +22 39 29.40 15.00 15.65 15.31     G5V-K0V 365 0
12 X Aql X-1 LXB 19 11 16.0571313336 +00 35 05.868232692           ~ 1107 1
13 HD 226868 HXB 19 58 21.6757355952 +35 12 05.784512688 9.38 9.72 8.91 8.42   O9.7Iabpvar 4269 0
14 NAME Cyg X Cld 20 28 41 +41 10.2           ~ 793 1
15 NGC 7589 Sy1 23 18 15.6790109856 +00 15 40.267016028   15.01 17.01     ~ 88 3

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2023.10.04-10:07:49

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