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On the problems of relativistic laboratory astrophysics and fundamental physics with super powerful lasers

机译:关于超相对论实验室的相对论实验室天体物理学和基础物理学问题

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The ways toward modeling of astrophysical processes and extreme field regimes with super-power lasers are discussed. The main attention is paid to the problem of limited similarity in using the dimensionless parameters characterizing the processes in the laser and astrophysical plasmas. As the most typical examples, we address the magnetic reconnection and collisionless shock waves relevant to the problem of ultrarelativistic particle acceleration. In the extreme field limits we consider the regimes of dominant radiation reaction, changing the electromagnetic wave-matter interaction. In these regimes it, in particular, results in a new powerful source of ultra high-brightness gamma-rays and will make possible electron-positron pair creation in vacuum in a multiphoton processes. This will allow modeling under terrestrial laboratory conditions the processes in astrophysical objects and paves the way to experimental verifications using ultra intense lasers as they are currently developed within the ELI project.
机译:讨论了用超功率激光器对天体物理过程和极端场态进行建模的方法。主要注意力集中在使用无量纲参数表征激光和天体等离子体过程的相似性有限的问题上。作为最典型的例子,我们解决与超相对论粒子加速问题有关的磁重联和无碰撞冲击波。在极限场限制下,我们考虑了主导辐射反应的状态,从而改变了电磁波与物质的相互作用。在这些情况下,它尤其会产生超高亮度伽马射线的新强大来源,并使多光子过程中真空中电子-正电子对的产生成为可能。这将允许在地面实验室条件下对天体物体中的过程进行建模,并为目前在ELI项目中开发的使用超强激光的实验验证铺平道路。

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