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Using the XFEL to drive the gain of inner-shell X-ray lasers using photoionization and photoexcitation processes

机译:使用XFEL通过光电离和光激发过程来驱动内壳X射线激光器的增益

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Four years ago an inner-shell X-ray laser was demonstrated at 849 eV in singly ionized neon gas using the LCLS X-FEL at 960 eV to photo-ionize the 1 s electron in neutral neon followed by lasing on the 2p - 1 s transition in singly-ionized neon. It took many decades to demonstrate this scheme because it required a very strong X-ray source that could photo-ionize the 1s (K shell) electrons in neon on a time scale comparable to the intrinsic auger lifetime in the neon, which is typically 2 fsec. In this work we model the neon inner shell X-ray laser under similar conditions to those used at LCLS and investigate how we can improve the efficiency of the neon laser and reduce the drive requirements by tuning the X-FEL to the 1s-3p transition in neutral neon in order to create gain on the 2p-ls line in neutral neon. We also explore using the XFEL to drive gain on 3-2 transitions in singly-ionized Ar and Cu plasmas.
机译:四年前,使用LCLS X-FEL在960 eV的单电离氖气中以849 eV的频率对内壳X射线激光进行了演示,以使中性氖中的1 s电子发生电离,然后发射2p-1 s激光单离子氖的过渡。该方案花了数十年的时间才得以证明,因为它需要一个非常强的X射线源,该射线源可以在霓虹灯中固有的螺旋钻寿命(通常为2倍)上将霓虹灯中的1s(K壳)电子光电离。 fsec。在这项工作中,我们在与LCLS相似的条件下对霓虹灯内壳X射线激光进行建模,并研究如何通过将X-FEL调整为1s-3p过渡来提高霓虹灯激光的效率并降低驱动器要求为了在中性霓虹灯的2p-ls线上产生增益,请使用中性霓虹灯。我们还探索了使用XFEL在单电离Ar和Cu等离子体的3-2跃迁上驱动增益。

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