Evolution of low-frequency quasi-periodic oscillations in GX 339-4 during its 2021 outburst using AstroSat data

Author:

Mondal Santanu1ORCID,Salgundi Anirudh12ORCID,Chatterjee Debjit1ORCID,Jana Arghajit34ORCID,Chang H-K3ORCID,Naik Sachindra5ORCID

Affiliation:

1. Indian Institute of Astrophysics, II Block Koramangala , Bangalore 560034 , India

2. Indian Institute of Technology Bombay , Powai 400076 , India

3. Institute of Astronomy, National Tsing Hua University , Hsinchu 300044 , Taiwan

4. Instituto de Estudios Astrofísicos, Universidad Diego Portales , Av. Ejército Libertador 441, 8370191 Santiago , Chile

5. Astronomy and Astrophysics Division, Physical Research Laboratory , Navrangpura, Ahmedabad 380009, Gujarat , India

Abstract

ABSTRACT The black hole X-ray binary GX 339-4 showed an X-ray outburst during 2021. The AstroSat captured this outburst when the source entered into the intermediate flux state while the count rate was declining. The source showed an alternating flux profile in a time-scale of ≲100 ks, where the hard energy band was more variable than the soft band. The energy-dependent timing study showed that the observed quasi-periodic oscillation (QPO) was prominent in the low-energy bands, with its nearly sub-harmonic and harmonic components. These components appear and disappear with time, as observed in the orbit-wise QPO study. The Q-value, fractional rms, and 4.8–5.6 Hz frequency infer the QPOs as type-B and the spectral state as soft intermediate. The rms spectra of all orbits exhibiting QPOs show an increase in amplitude till ∼10 keV, beyond which it starts decreasing. This may indicate that ∼10 keV photons contributed relatively more in QPOs than other energy band photons. The Lorentzian normalization of the type-B QPO in different energy bands is consistent with the 10 keV peak. The energy-dependent time lag is complex and could be associated with the Comptonizing corona or jet. Finally, we discuss possible reasons behind the origin of different timing properties observed.

Funder

SERB

DST

Ministry of Science and Technology of Taiwan

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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