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

机译:MISSUME观察V404 Cygni在2015年爆发:两个具有不同变异性的光学变量组件

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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 ', R-C, and I-C) 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 alpha similar to 0.6-1.0. For the less-variable component, we argue that an irradiated disk with the innermost temperature higher than similar to 2.0 x 10(4) K and the outermost temperature lower than similar to 6.5 x 10(3) 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:黑洞二进制V404 Cygni(= GS 2023 + 338)在2015年6月15日之后在其静态26年后突出了。我们在Mitsume 50cm望远镜在Akeno,Yamanashi和Murikabushi 105cm望远镜在Ishigakijima天文天文台的开始,在其爆发开始时报告这个目的的多色光学观察(G',R-C和I-C)。通过多色光曲线的时域分析,我们成功地将光学变化分成了两个组件:高变量和较少可变的组件。颜色图中的较少可变分量的基因座与多温黑体辐射的轨迹一致,而高度可变分量的那些具有类似于0.6-1.0的光谱折射率α的功率法谱。对于较少可变的组件,我们认为辐照盘具有高于类似于2.0×10(4)k的温度和低于类似于6.5×10(3)k的最外层的磁盘是最合理的源。在我们观察期间,光线曲线的逐渐上升趋势可能是由于变量的不断增长。从光学到紫外线的观察到的光谱能量分布可以由由电力法组成和照射的盘组件组成的模型来表示。

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