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An evolving compact jet in the black hole X-ray binary MAXI J1836-194

机译:黑洞X射线二进制MAXI J1836-194中正在演化的紧凑型射流

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摘要

We report striking changes in the broadband spectrum of the compact jet of the black hole transient MAXI J1836-194 over state transitions during its discovery outburst in 2011. A fading of the optical-infrared (IR) flux occurred as the source entered the hard-intermediate state, followed by a brightening as it returned to the hard state. The optical-IR spectrum was consistent with a power law from optically thin synchrotron emission, except when the X-ray spectrum was softest. By fitting the radio to optical spectra with a broken power law, we constrain the frequency and flux of the optically thick/thin break in the jet synchrotron spectrum. The break gradually shifted to higher frequencies as the source hardened at X-ray energies, from ~10~(11) to ~4 × 10~(13) Hz. The radiative jet luminosity integrated over the spectrum appeared to be greatest when the source entered the hard state during the outburst decay (although this is dependent on the high-energy cooling break, which is not seen directly), even though the radio flux was fading at the time. The physical process responsible for suppressing and reactivating the jet (neither of which are instantaneous but occur on timescales of weeks) is uncertain, but could arise from the varying inner accretion disk radius regulating the fraction of accreting matter that is channeled into the jet. This provides an unprecedented insight into the connection between inflow and outflow, and has implications for the conditions required for jets to be produced, and hence their launching process.
机译:我们报告了在2011年发现爆发期间,黑洞瞬变MAXI J1836-194的紧凑射流的宽带光谱在状态转换过程中发生的显着变化。当源进入硬核时,光红外(IR)通量发生了衰减。中间状态,然后变亮,回到硬状态。光学IR光谱与光学上薄的同步加速器发射的功率定律一致,除非X射线光谱最软。通过使无线电适合具有破裂功率定律的光谱,我们可以限制射流同步加速器光谱中光学上较厚/较薄的断裂的频率和通量。随着源在X射线能量下变硬,断裂逐渐转移到更高的频率,从〜10〜(11)到〜4×10〜(13)Hz。当辐射源在爆发衰减过程中进入硬状态时,光谱上积分的辐射射流光度似乎最大(尽管这取决于高能冷却破裂,这无法直接看到),即使无线电通量正在逐渐消失。当时。负责抑制和重新激活射流的物理过程(都不是瞬时的,而是在几周的时间尺度上发生)是不确定的,但可能是由于内部吸积盘半径的变化而产生的,该半径调节着引导到射流中的分泌物的比例。这为流入和流出之间的联系提供了空前的见解,并影响了生产喷气机所需的条件,进而影响了其发射过程。

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