A spectral study of the black hole X-ray binary MAXI J1820+070 with AstroSat and NuSTAR

Author:

Chakraborty Sudip1ORCID,Navale Nilam23,Ratheesh Ajay456,Bhattacharyya Sudip1ORCID

Affiliation:

1. Department of Astronomy and Astrophysics, Tata Institute of Fundamental Research, Mumbai 400005, India

2. University Department of Physics, University of Mumbai, Kalina, Santacruz, Mumbai 400098, India

3. Ramniranjan Jhunjhunwala College, Ghatkopar, Mumbai 400086, India

4. Department of Physics, University of Rome ‘Tor Vergata’, via della Ricerca Scientifica 1, I-00133 Rome, Italy

5. INAF-IAPS, Via del Fosso del Cavaliere 100, I-00133 Rome, Italy

6. Department of Physics, University of Rome ‘La Sapienza’, P. le A. Moro 2, I-00185 Rome, Italy

Abstract

ABSTRACT MAXI J1820+070 is a newly discovered transient black hole X-ray binary, which showed several spectral and temporal features. In this work, we analyse the broad-band X-ray spectra from all three simultaneously observing X-ray instruments onboard AstroSat, as well as contemporaneous X-ray spectra from NuSTAR, observed during the hard state of MAXI J1820+070 in 2018 March. Implementing a combination of multicolour disc model, relativistic blurred reflection model relxilllpcp, and a distant reflection in the form of xillvercp, we achieve reasonable and consistent fits for AstroSat and NuSTAR spectra. The best-fitting model suggests a low temperature disc (kTin ∼ 0.3 keV), iron overabundance (AFe ∼ 4–5 solar), a short lamp-post corona height (h ≲ 8Rg), and a high corona temperature (kTe ∼ 115–150 keV). Addition of a second Comptonization component leads to a significantly better fit, with the kTe of the second Comptonization component being ∼14–18 keV. Our results from independent observations with two different satellites in a similar source state indicate an inhomogeneous corona, with decreasing temperature attributed to increasing height. Besides, utilizing the broader energy coverage of AstroSat, we estimate the black hole mass to be 6.7–13.9 M⊙, consistent with independent measurements reported in the literature.

Funder

California Institute of Technology

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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