Type-A quasi-periodic oscillation in the black hole transient MAXI J1348−630

Author:

Zhang Liang1ORCID,Méndez Mariano2ORCID,García Federico3ORCID,Zhang Yuexin2ORCID,Ma Ruican1ORCID,Altamirano Diego4,Yang Zi-Xu1,Ma Xiang1,Tao Lian1,Huang Yue1,Jia Shumei1,Zhang Shuang-Nan1,Qu Jinlu1,Song Liming1ORCID,Zhang Shu1

Affiliation:

1. Key Laboratory of Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of Sciences , Beijing 100049 , China

2. Kapteyn Astronomical Institute, University of Groningen , Postbus 800, NL-9700 AV Groningen , the Netherlands

3. Instituto Argentino de Radioastronomía (CCT La Plata, CONICET; CICPBA; UNLP) , C.C.5, (1894) Villa Elisa, Buenos Aires , Argentina

4. Physics and Astronomy, University of Southampton , Southampton, Hampshire SO17 1BJ , UK

Abstract

ABSTRACT We present a detailed analysis of the spectral and timing characteristics of a 7-Hz type-A quasi-periodic oscillation (QPO) detected in NICER observations of the black hole X-ray binary MAXI J1348−630 during its high-soft state. The QPO is broad and weak, with an integrated fractional rms amplitude of 0.9 per cent in the 0.5–10 keV band. Thanks to the large effective area of NICER, combined with the high flux of the source and a relatively long accumulative exposure time, we construct the first rms and phase-lag spectra for a type-A QPO. Our analysis reveals that the fractional rms amplitude of the QPO increases with energy from below 1 per cent at 1 keV to ∼3 per cent at 6 keV. The shape of the QPO spectrum is similar to that of the Comptonized component, suggesting that the Comptonized region is driving the variability. The phase lags at the QPO frequency are always soft taking the lowest energy as reference. By jointly fitting the time-averaged spectrum of the source and the rms and phase-lag spectra of the QPO with the time-dependent Comptonization model vkompthdk, we find that the radiative properties of the type-A QPO can be explained by a vertically extended Comptonized region with a size of ∼2300 km.

Funder

National Natural Science Foundation of China

NSFC

Dutch Research Council

CONICET

China Scholarship Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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