论文标题

在NGC 4945中发现瞬态X射线源Suzaku J1305-4930

Discovery of a transient X-ray source Suzaku J1305-4930 in NGC 4945

论文作者

Ide, Shuntaro, Hayashida, Kiyoshi, Noda, Hirofumi, Kurubi, Hiroyuki, Yoneyama, Tomokage, Matsumoto, Hironori

论文摘要

我们报告了偶然发现的暂时X射线源,Suzaku J1305 $ - $ 4930,$ \ sim $ \ sim $ 3 kpc Seyfert 2 Galaxy NGC 4945的西南部西南。 2010。与幂律模型相比,使用多色磁盘模型近似X射线光谱。在2010年7月4日至5日的首次检测中,其X射线光度为$(8.9^{+0.2} _ { - 0.4})\ times 10^{38} $ erg s $^{ - 1} $,内部disk radius的温度($ kt _ {$ kt _ {\ rm in} $)是$ 1.12 $ $ 1.112 \ pm pm pm pm pm pm pm pm pm pm pm pm pm c.在2010年8月4日至5日与苏扎库的最后一次检测中,亮度降至$(2.2^{+0.3} _ { - 0.8})\ times10^{38} $ erg s $^{ - 1} $和$ kt _ {\ rm in} $ 0.62 $ $ 0.62 \ pm0.0.0.0.0.a $ kt。在2011年1月29日,大约在第一次检测后六个月,未检测到源,其光度上限为$ 2.4 \ times10^{38} $ erg s $^{ - 1} $。我们还发现一种吸收特征,与CYG X-1中报道的功能相似。假设标准磁盘,我们建议Suzaku J1305 $ - $ 4930由一个黑洞组成,质量为$ \ sim $ 10 $ m _ {\ odot} $。磁盘发光度与$ kt _ {\ rm in} $之间的关系不是用恒定内半径的标准模型复制的,而是通过纤细的磁盘模型更好地近似。

We report the serendipitous discovery of a transient X-ray source, Suzaku J1305$-$4930, $\sim$3 kpc southwest of the nucleus of the Seyfert 2 galaxy NGC 4945. Among the seven Suzaku observations of NGC 4945 from 2005 to 2011, Suzaku J1305$-$4930 was detected four times in July and August in 2010. The X-ray spectra are better approximated with a multi-color disk model than a power-law model. At the first detection on 2010 July 4--5, its X-ray luminosity was $(8.9^{+0.2}_{-0.4}) \times 10^{38}$ erg s$^{-1}$ and the temperature at the inner-disk radius ($kT_{\rm in}$) was $1.12\pm0.04$ keV. At the last detection with Suzaku on 2010 August 4--5, the luminosity decreased to $(2.2^{+0.3}_{-0.8}) \times10^{38}$ erg s$^{-1}$ and $kT_{\rm in}$ was $0.62\pm0.07$ keV. The source was not detected on 2011 January 29, about six months after the first detection, with a luminosity upper limit of $2.4\times10^{38}$ erg s$^{-1}$. We also find an absorption feature which is similar to that reported in Cyg X-1. Assuming the standard disk, we suggest that Suzaku J1305$-$4930 consists of a black hole with a mass of $\sim$10 $M_{\odot}$. The relation between the disk luminosity and $kT_{\rm in}$ is not reproduced with the standard model of a constant inner radius but is better approximated with a slim-disk model.

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