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Modeling nonthermal emission from stellar bow shocks

机译:模拟恒星弓形冲击的非热辐射

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Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic velocities and characterized by strong stellar winds may produce bow shocks that can serve as particle acceleration sites. Previous theoretical models predict the production of high-energy photons by nonthermal radiative processes, but their efficiency is still debated. Aims. We aim to test and explain the possibility of emission from the bow shocks formed by runaway stars traveling through the interstellar medium by using previous theoretical models. Methods. We applied our model to AE Aurigae, the first reported star with an X-ray detected bow shock, to BD+43?3654, in which the observations failed in detecting high-energy emission, and to the transition phase of a supergiant star in the late stages of its life. Results. From our analysis, we confirm that the X-ray emission from the bow shock produced by AE Aurigae can be explained by inverse Compton processes involving the infrared photons of the heated dust. We also predict low high-energy flux emission from the bow shock produced by BD+43?3654, and the possibility of high-energy emission from the bow shock formed by a supergiant star during the transition phase from blue to red supergiant. Conclusions. Bow shocks formed by different types of runaway stars are revealed as a new possible source of high-energy photons in our neighborhood.
机译:上下文。以超音速穿过星际介质且以强恒星风为特征的失控的O型和B型早期恒星可能产生弓激波,可以用作粒子加速点。先前的理论模型预测非热辐射过程将产生高能光子,但其效率仍存在争议。目的我们的目的是通过使用先前的理论模型来测试和解释由失控恒星穿过星际介质而形成的弓形激波发射的可能性。方法。我们将模型应用到AE Aurigae(第一个报告有X射线检测到的弓形震荡的恒星),BD + 43?3654(其中观测未能检测到高能发射)以及超巨星的过渡阶段。它生命的后期。结果。通过我们的分析,我们可以确定,AE Aurigae产生的弓形激波发出的X射线可以通过涉及加热粉尘的红外光子的逆康普顿过程来解释。我们还预测了BD + 43?3654产生的弓形激波产生的高能通量较低,以及超巨星从蓝色到红色超巨星的过渡阶段由弓形激波形成的高能通量的可能性。结论。由不同类型的失控恒星形成的弓激波被揭示为我们附近高能光子的新可能来源。

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