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The X-ray jets of active galaxies

机译:活跃星系的X射线射流

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Jet physics is again flourishing as a result of Chandras ability to resolve high-energy emission from the radio-emitting structures of active galaxies and separate it from the X-ray-emitting thermal environments of the jets. These enhanced capabilities have coincided with an increasing interest in the link between the growth of super-massive black holes and galaxies, and an appreciation of the likely importance of jets in feedback processes. I review the progress that has been made using Chandra and XMM-Newton observations of jets and the medium in which they propagate, addressing several important questions, including: Are the radio structures in a state of minimum energy? Do powerful large-scale jets have fast spinal speeds?What keeps jets collimated? Where and how does particle acceleration occur? What is jet plasma made of?What does X-ray emission tell us about the dynamics and energetics of radio plasma/gas interactions? Is a jets fate determined by the central engine?
机译:钱德拉斯有能力解决活跃星系放射结构中的高能辐射,并将其与射流的X射线热环境分开的能力,从而使喷气物理学再次蓬勃发展。这些增强的功能与对超大质量黑洞和星系之间的联系日益增长的兴趣,以及对射流在反馈过程中可能的重要性的认识相吻合。我回顾了使用Chandra和XMM-Newton对射流及其传播介质的观察所取得的进展,并提出了几个重要问题,其中包括:无线电结构是否处于最低能量状态?强大的大型喷气机的脊椎速度快吗?什么使喷气机保持准直?粒子加速在哪里发生,如何发生?射流等离子体是由什么构成的?X射线发射告诉我们有关放射性等离子体/气体相互作用的动力学和能量学?飞机的命运是由中央引擎决定的吗?

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