Combined Spectral and Timing Analysis of the Black Hole Candidate MAXI J1659-152 Discovered by MAXI and Swift
Kazutaka Yamaoka, Ryan Allured, Philip Kaaret, Jamie A. Kennea,, Toshihiro Kawaguchi, Poshak Gandhi, Nicholai Shaposhnikov, Yoshihiro Ueda,, Satoshi Nakahira, Taro Kotani, Hitoshi Negoro, Ichiro Takahashi, Atsumasa, Yoshida, Nobuyuki Kawai, and Satoshi Sugita

TL;DR
This study analyzes the spectral and timing properties of the black hole candidate MAXI J1659-152 during its 2010 outburst, revealing insights into its accretion disk behavior, QPO characteristics, and estimating its mass.
Contribution
It provides a combined spectral and timing analysis of MAXI J1659-152, identifying distinct QPO types and estimating the black hole mass based on disk radius measurements.
Findings
Inner disk radius decreased during outburst
Type-C and type-B QPOs have different origins
Estimated black hole mass is 3.6-8.0 solar masses
Abstract
We report on X-ray spectral and timing results of the new black hole candidate (BHC) MAXI J1659-152 with the orbital period of 2.41 hours (shortest among BHCs) in the 2010 outburst from 65 Rossi X-ray Timing Explorer (RXTE) observations and 8 simultaneous Swift and RXTE observations. According to the definitions of the spectral states in Remillard & McClintock (2006), most of the observations have been classified into the intermediate state. All the X-ray broadband spectra can be modeled by a multi-color disk plus a power-law with an exponential cutoff or a multi-color disk plus a Comptonization component. During the initial phase of the outburst, a high energy cutoff was visible at 30-40 keV. The innermost radius of the disk gradually decreased by a factor of more than 3 from the onset of the outburst and reached a constant value of 35 d_10 cos i^-1/2 km, where d_10 is the distance in…
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