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Nonthermal processes and neutrino emission from the black hole GRO J0422+32 in a bursting state

机译:黑洞GRO J0422 + 32在爆发状态下的非热过程和中微子发射

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Context. GRO J0422+32 is a member of the class of low-mass X-ray binaries (LMXBs). It was discovered during an outburst in 1992. During the entire episode a persistent power-law spectral component extending up to??~1?MeV was observed, which suggests that nonthermal processes should have occurred in the system. Aims. We study relativistic particle interactions and the neutrino production in the corona of GRO J0422+32, and explain the behavior of GRO J0422+32 during its recorded flaring phase. Methods. We have developed a magnetized corona model to fit the spectrum of GRO J0422+32 during the low-hard state. We also estimate neutrino emission and study the detectability of neutrinos with 1 km3 detectors, such as IceCube. Results. The short duration of the flares (~hours) and an energy cutoff around a few TeV in the neutrino spectrum make neutrino detection difficult. There are, however, many factors that can enhance neutrino emission. Conclusions. The northern-sky coverage and full duty cycle of IceCube make it possible to detect neutrino bursts from objects of this kind through time-dependent analysis.
机译:上下文。 GRO J0422 + 32是低质量X射线二进制文件(LMXB)的成员。它是在1992年的一次爆发中被发现的。在整个事件中,观察到一个持续的幂律谱分量扩展到??〜1?MeV,这表明系统中应该发生了非热过程。目的我们研究了GRO J0422 + 32日冕中的相对论粒子相互作用和中微子产生,并解释了GRO J0422 + 32在记录的喇叭口阶段的行为。方法。我们已经开发出一种磁化的电晕模型,以适应低硬度状态下GRO J0422 + 32的光谱。我们还估算中微子的发射,并使用1 km3探测器(如IceCube)研究中微子的可探测性。结果。耀斑的持续时间短(约数小时),中微子谱中的几个TeV附近的能量截止使中微子的检测变得困难。但是,有许多因素可以增强中微子的发射。结论。 IceCube的北半球覆盖范围和整个工作周期使得通过依赖于时间的分析来检测此类物体的中微子爆发成为可能。

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