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MITSuME observation of V404?Cygni in the 2015 outburst: Two optical variable components with different variability

机译:MITSuME在2015年爆发时观测到V404?Cygni:两个具有不同可变性的光学可变组件

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The black hole binary V404?Cygni (= GS 2023+338) had an outburst on 2015 June 15 after 26 years of its quiescence. We report on the multi-color optical observation (g?, RC, and IC) of this object at the beginning of its outburst performed by the MITSuME 50?cm telescope in Akeno, Yamanashi, and the MURIKABUSHI 105?cm telescope at Ishigakijima Astronomical Observatory. Through time domain analysis of the multi-color light curves, we successfully decomposed the optical variations into two components: a highly variable and a less-variable component. The loci of the less-variable component in the color–color diagram are consistent with that of multi-temperature blackbody radiation, while those of the highly variable component trace out a power-law spectrum with a spectral index α ~ 0.6–1.0. For the less-variable component, we argue that an irradiated disk with the innermost temperature higher than ~2.0 × 104?K and the outermost temperature lower than ~6.5 × 103?K is the most plausible source. The gradual rising trend of the light curve during our observation is probably due to the growing of the less-variable component. The observed spectral energy distribution from optical to ultraviolet can be expressed by a model consisting of a power-law component and an irradiated disk component.
机译:经过26年的静止之后,黑洞二进制V404?Cygni(= GS 2023 + 338)在2015年6月15日爆发。我们报告了由山梨县明野市的MITSuME 50?cm望远镜和石垣岛天文台的MURIKABUSHI 105?cm望远镜对这个物体爆发时的多色光学观察(g?,RC和IC)。天文台。通过对多色光曲线进行时域分析,我们成功地将光学变化分解为两个分量:高可变分量和低可变分量。彩色图表中可变性较小的位点与多温度黑体辐射的位点一致,而可变性较高的位点则描绘出幂律光谱,光谱指数为α〜0.6–1.0。对于可变性较小的成分,我们认为最里面的温度高于〜2.0×104?K且最外面的温度低于〜6.5×103?K的辐照圆盘是最合理的来源。在我们观察期间,光曲线的逐渐上升趋势可能是由于变化较小的分量的增长。观察到的从光学到紫外的光谱能量分布可以通过由幂律分量和辐照圆盘分量组成的模型表示。

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