paper

Decoding the Origin of HFQPOs of GRS 1915+105 during 'Canonical' Soft States: An In-depth View using Multi-mission observations

arXiv:2504.14193

Abstract

We present a comprehensive analysis of the 'canonical' soft state (, , and spectral variability classes) of the black hole binary GRS 1915+105, using RXTE, AstroSat, and NuSTAR data from 1996 to 2017 to investigate the origin of High Frequency Quasi-periodic Oscillations (HFQPOs). Our findings reveal that HFQPOs occur only in the and classes, with frequencies of Hz and are absent in the class. We observe an evolution of time-lag from hard-lag (1.597.55 ms) in RXTE to a soft-lag (0.491.68 ms) in AstroSat observations. Wide-band (0.750 keV) spectral modelling suggests that HFQPOs are likely observed with a higher covering fraction (), i.e., the fraction of seed photons being Comptonized in the corona, enhanced Comptonized flux ( 38%), and lower optical depth ( ) in contrast to observations where HFQPOs are absent. We observed similar constraints for observing HFQPOs during an inter-class () transition as well as in a few intra-class () variations. We also find that the time-lag decreases as increases, indicating that a higher reduces Compton up-scattering, thereby decreasing the hard-lag. Interestingly, in RXTE observations, the hard-lag ( 7 ms) gradually decreases as optical depth and Comptonization ratio increases, eventually becoming a soft-lag (1 ms) in AstroSat observations. These constraints on spectro-temporal parameters for the likelihood of observing HFQPOs support a 'compact' coronal oscillation mechanism for generating HFQPOs, which we attempt to explain within the framework of a possible accretion scenario.

16 pages, 8 figures, Accepted for publication in MNRAS

Decoding the Origin of HFQPOs of GRS 1915+105 during 'Canonical' Soft States: An In-depth View using Multi-mission observations · wovepaper