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Using the XFEL to Drive Gain in K-Shell and L-Shell Systems Using Photoionization and Photoexcitation of Inner Shell Transitions

机译:使用XFEL使用Inter Shell Transitions的PhotoIonization和PhotoExcition在K-Shell和L-Shell系统中驱动增益

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Six years ago, X-ray lasing on an inner shell transition was demonstrated at 849 eV (1.46 nm) in singly ionized neon gas using the XFEL at 960 eV to photoionize the Is electron in neutral neon followed by lasing on the 2p-ls transition in singly ionized neon. That research was done at the SLAC Linac Coherent Light Source (LCLS) by a multi-laboratory team led by Nina Rohringer and published in the January 26, 2012, issue of Nature. It took many decades to demonstrate this scheme because it required a very strong X-ray source that could photoionize the Is (K-shell) electrons in neon on a timescale comparable to the intrinsic auger lifetime in neon, which is typically 2 fs. In this chapter, we have shown how the XFEL could be used to photoionize L-shell electrons to drive gain on n= 3-2 transitions in singly ionized Ar and Cu plasmas. These bright, coherent and monochromatic X-ray lasers may prove to be very useful for doing high-resolution spectroscopy and for studying nonlinear process in the X-ray regime.
机译:六年前,在849eV(1.46nm)中,使用960eV的XFEL在849eV(1.46nm)上在849eV(1.46nm)上显示了在中性氖气中的电子氖气中的X射线,然后在2P-LS转变上进行了光电偶联在单独的电离霓虹灯中。该研究是由由Nina Rohringer领导的多实验室团队在SLAC LinaC相干光源(LCLS)上完成,并在2012年1月26日发表,发出自然界。花了数十年来展示该方案,因为它需要一个非常强大的X射线源,其可以将霓虹灯中的IS(k-shell)电子与霓虹灯的内在螺旋寿命相当的少年,这通常是2 fs。在本章中,我们已经示出了如何使用XFEL将L-Shell电子从单独电离AR和Cu等离子体中的N = 3-2转换的增益飞行。这些明亮的相干和单色X射线激光器可能被证明是非常有用的,用于进行高分辨率光谱和用于在X射线状态下研究非线性过程。

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