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Relativistic stellar jets: dynamics and non-thermal radiation - Estimates on the dynamical impact of the stellar wind in low- and high-mass microquasars

机译:相对论的恒星射流:动力学和非热辐射-估计低质量和高质量微类星体中恒星风的动力学影响

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Relativistic stellar jets, produced in binary systems called microquasars, propagate through media with different spatial scales releasing their energy in the form of work and radiation from radio to gamma rays. There are several medium-interaction scenarios that these jets can face. In particular, in relativistic stellar jets the presence of a star is an unavoidable element whose importance deserves to be studied. In the case of highmass stars, their powerful winds are likely to interact dynamically with the jet, but also low-mass stars in the post-main sequence phase can present dense winds that will act as an obstacle for the jet propagation. In this work, we present a semi-qualitative discussion on the importance of the star for the evolution of relativistic stellar jets.
机译:相对论恒星射流是在称为微类星体的二元系统中产生的,它通过具有不同空间尺度的介质传播,以功的形式释放其能量,并从无线电辐射到伽玛射线。这些喷气机可能会遇到几种中等互动的情况。特别地,在相对论恒星射流中,恒星的存在是不可避免的元素,其重要性值得研究。在高质量恒星的情况下,它们强大的风很可能与射流动态相互作用,但是在主后序阶段的低质量恒星也可能呈现密集风,这将成为射流传播的障碍。在这项工作中,我们对恒星对相对论恒星喷射的重要性进行了半定性的讨论。

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