论文标题

高速和半偏见的恒星中的非热发射

Non-thermal emission in hyper-velocity and semi-relativistic stars

论文作者

Martinez, J. R., del Palacio, S., Bosch-Ramon, V., Romero, G. E.

论文摘要

语境。相对于周围环境,有大量失控的恒星以极高的速度移动。这些恒星的快速运动和恒星风以及风中的相互作用会导致颗粒加速和非热辐射。 目标。我们表征了快速失控的恒星与环境的风之间的相互作用,特别是为了确定其作为宇宙射线加速器和非热发射器的潜力。 方法。我们对恒星风与周围材料之间相互作用的流体动力学进行建模。我们使用多区域代码自言自语计算弓冲击中相对论颗粒的注入和运输,并计算其从无线电到$γ$砂的宽带发射。 结果。尽管颗粒的辐射效率很低,因此前进和反向冲击都是颗粒加速度的有利位点,因此预期的通量通常相当微弱。 结论。我们表明,无线电带中的高敏化观测值可用于检测与超速度和半偏见恒星的弓形冲击相关的非热辐射。预计高速级别的恒星将是亚tev宇宙射线的适度来源,可能会计$ \ sim 0.1 $ 0.1 $ 0.1 $%的银河宇宙射线。

Context. There is a population of runaway stars that move at extremely high speeds with respect to their surroundings. The fast motion and the stellar wind of these stars, plus the wind-medium interaction, can lead to particle acceleration and non-thermal radiation. Aims. We characterise the interaction between the winds of fast runaway stars and their environment, in particular to establish their potential as cosmic-ray accelerators and non-thermal emitters. Methods. We model the hydrodynamics of the interaction between the stellar wind and the surrounding material. We self-consistently calculate the injection and transport of relativistic particles in the bow shock using a multi-zone code, and compute their broadband emission from radio to $γ$-rays. Results. Both the forward and reverse shocks are favourable sites for particle acceleration, although the radiative efficiency of particles is low and therefore the expected fluxes are in general rather faint. Conclusions. We show that high-sensitivity observations in the radio band can be used to detect the non-thermal radiation associated with bow shocks from hypervelocity and semi-relativistic stars. Hypervelocity stars are expected to be modest sources of sub-TeV cosmic rays, accounting perhaps for a $\sim 0.1$% of that of galactic cosmic rays.

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