QPO signatures of disk restoration after type-I X-ray bursts from 4U~1636$-$536

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Hauptverfasser: Chattopadhyay, Suchismito, Chauhan, Jaiverdhan, Misra, Ranjeev, Lohfink, Anne, Starling, Rhaana, Bharali, Priya, Mandal, Soma
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Veröffentlicht: 2025
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author Chattopadhyay, Suchismito
Chauhan, Jaiverdhan
Misra, Ranjeev
Lohfink, Anne
Starling, Rhaana
Bharali, Priya
Mandal, Soma
author_facet Chattopadhyay, Suchismito
Chauhan, Jaiverdhan
Misra, Ranjeev
Lohfink, Anne
Starling, Rhaana
Bharali, Priya
Mandal, Soma
contents Type--I thermonuclear bursts (TNBs) from neutron star low-mass X-ray binaries (NS LMXBs) originate on the neutron star's surface from the unstable burning of the accreted material. On the other hand, kHz quasi-periodic oscillations (QPOs) are thought to originate in the innermost regions of the in-spiralling accretion disk. Type-I TNBs are expected to impact the inner accretion flow, and consequently the kHz QPOs, due to the intense radiation pressure. In this work, we systematically study the evolution of the upper and the lower kHz QPOs immediately before and after a Type--I TNB on 4U 1636-536 using AstroSat observations in the 3--20,keV band. The analysis of the power-density-spectra show the presence of kHz QPOs within 200,seconds before the onset of the Type--I burst. However, we have not detected any prominent signature of the same within 100--200,sec after the burst. The kHz QPOs then re-emerges after $\approx$\,200\,sec. The fractional rms variation in the 3--20\,keV band drops by $\approx$\,5--6\,\%, supporting the non-existence of kHz QPOs in the 200\,sec post-Burst Zone. The time scale of 200\,sec coincides with the viscous time scale, highlighting a scenario where the inner disk is temporarily disrupted by the intense radiation from the Type--I TNB. The kHz QPO then re-establishes as the inner disk is restored.
format Preprint
id arxiv_https___arxiv_org_abs_2505_01291
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle QPO signatures of disk restoration after type-I X-ray bursts from 4U~1636$-$536
Chattopadhyay, Suchismito
Chauhan, Jaiverdhan
Misra, Ranjeev
Lohfink, Anne
Starling, Rhaana
Bharali, Priya
Mandal, Soma
High Energy Astrophysical Phenomena
Type--I thermonuclear bursts (TNBs) from neutron star low-mass X-ray binaries (NS LMXBs) originate on the neutron star's surface from the unstable burning of the accreted material. On the other hand, kHz quasi-periodic oscillations (QPOs) are thought to originate in the innermost regions of the in-spiralling accretion disk. Type-I TNBs are expected to impact the inner accretion flow, and consequently the kHz QPOs, due to the intense radiation pressure. In this work, we systematically study the evolution of the upper and the lower kHz QPOs immediately before and after a Type--I TNB on 4U 1636-536 using AstroSat observations in the 3--20,keV band. The analysis of the power-density-spectra show the presence of kHz QPOs within 200,seconds before the onset of the Type--I burst. However, we have not detected any prominent signature of the same within 100--200,sec after the burst. The kHz QPOs then re-emerges after $\approx$\,200\,sec. The fractional rms variation in the 3--20\,keV band drops by $\approx$\,5--6\,\%, supporting the non-existence of kHz QPOs in the 200\,sec post-Burst Zone. The time scale of 200\,sec coincides with the viscous time scale, highlighting a scenario where the inner disk is temporarily disrupted by the intense radiation from the Type--I TNB. The kHz QPO then re-establishes as the inner disk is restored.
title QPO signatures of disk restoration after type-I X-ray bursts from 4U~1636$-$536
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2505.01291