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SPECTRAL VARIABILITY OF CYGNUS X-1 DURING AN INTERMEDIATE STATE

机译:中间状态下的Cygnus X-1的光谱变异性

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We report the results of a simultaneous radio (Ryle telescope) and hard X-ray INTEGRAL observation of Cygnus X-1 during an intermediate state. During the 4 day long observation the broad band (3-200keV) luminosity varied by up to a factor of 2.6 and the source showed an important spectral variability. A principal component analysis demonstrates that most of this variability occurs through 2 independent modes. The first mode consists in changes in the overall luminosity on time scale of hours with almost constant spectra (responsible for 68% of the variance) We interpret this variability mode as variations of the dissipation rate in the corona, possibly associated with magnetic flares. The second variability mode consists in a pivoting of the spectrum around ~10keV (27% of the variance). It acts on a longer time-scale: initially soft, the spectrum hardens in the first part of the observation and then softens again. This pivoting pattern is strongly correlated with the radio (15GHz) emission: radio fluxes are stronger when the INTEGRAL spectrum is harder We propose that the pivoting mode represents a 'mini' state transition from a nearly High Soft State to a nearly Low Hard State, and back. This mini-transition would be caused by changes in the soft cooling photons flux in the hot Comptonising plasma associated with an increase of the temperature of the accretion disc. The jet power then appears to be anti-correlated with the disc luminosity and unrelated to the coronal power.
机译:我们的中间状态期间,报告同时无线电(莱尔望远镜)的结果,并天鹅X-1的硬X射线积分观察。在4天的长时间的观察宽频带(3-200keV)光度变化达2.6倍和源显示出重要的光谱变化。主成分分析表明,大部分这种变化的发生通过2种独立的模式。第一模式包括在上的小时的时间尺度整体亮度几乎恒定光谱(负责方差的68%)的变化,我们解释这种变化模式,如电晕消散速度,可能与磁性相关联的耀斑的变化。第二变化模式包括在围绕〜10keV(方差的27%)的频谱的枢转。它作用于较长的时间尺度:最初柔软,频谱变硬的观察的第一部分,然后再次软化。这种旋转样式强烈与无线电(15GHz)相关的排放:无线电通量更强,当积分谱更难我们建议旋转模式代表了近低硬状态从近高软状态一个“小”的状态转变,然后回来。这种迷你过渡将通过在软冷却光子变化而引起的增加的吸积盘的温度的相关联的热Comptonising等离子体中通量。射流功率然后似乎是与盘光度反相关和无关的冠状功率。

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