ASTROSAT/LAXPC REVEALS THE HIGH-ENERGY VARIABILITY OF GRS 1915+105 IN THE χ CLASS

被引:80
作者
Yadav, J. S. [1 ]
Misra, Ranjeev [2 ]
Chauhan, Jai Verdhan [1 ]
Agrawal, P. C. [3 ]
Antia, H. M. [1 ]
Pahari, Mayukh [2 ]
Dedhia, Dhiraj [1 ]
Katoch, Tilak [1 ]
Madhwani, P. [1 ]
Manchanda, R. K. [4 ]
Paul, B. [5 ]
Shah, Parag [1 ]
Ishwara-Chandra, C. H. [6 ]
机构
[1] Tata Inst Fundamental Res, Homi Bhabha Rd, Bombay, Maharashtra, India
[2] Interuniv Ctr Astron & Astrophys, Pune 411007, Maharashtra, India
[3] Univ Mumbai, UM DAE Ctr Excellence Basic Sci, Bombay 400098, Maharashtra, India
[4] Univ Mumbai, Bombay 400098, Maharashtra, India
[5] Raman Res Inst, Dept Astron & Astrophys, Bengaluru 560080, India
[6] Natl Ctr Radio Astrophys, Pune 411007, Maharashtra, India
关键词
accretion; accretion disks; black hole physics; X-rays: binaries; QUASI-PERIODIC OSCILLATIONS; IGR J17091-3624; PLATEAU STATE; PHASE-LAG; FREQUENCY; TIME; GRS-1915+105; CALIBRATION; CONNECTION; EMISSION;
D O I
10.3847/0004-637X/833/1/27
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present the first quick look analysis of data from nine AstroSat' s Large Area X-ray Proportional Counter (LAXPC) observations of GRS 1915+105 during 2016 March when the source had the characteristics of being in the. Radio-quiet chi class. We find that a simple empirical model of a disk blackbody emission, with Comptonization and a broad Gaussian Iron line can fit the time-averaged 3-80 keV spectrum with a systematic uncertainty of 1.5% and a background flux uncertainty of 4%. A simple dead time corrected Poisson noise level spectrum matches well with the observed high-frequency power spectra till 50 kHz and as expected the data show no significant high-frequency (>20 Hz) features. Energy dependent power spectra reveal a strong low-frequency (2-8Hz) quasi-periodic oscillation and its harmonic along with broadband noise. The QPO frequency changes rapidly with flux (nearly 4 Hz in similar to 5 hr). With increasing QPO frequency, an excess noise component appears significantly in the high-energy regime (>8 keV). At the QPO frequencies, the time-lag as a function of energy has a non-monotonic behavior such that the lags decrease with energy till about 15-20 keV and then increase for higher energies. These first-look results benchmark the performance of LAXPC at high energies and confirms that its data can be used for more sophisticated analysis such as flux or frequency-resolved spectro-timing studies.
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页数:9
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