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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Ultrafast coherent and incoherent X-ray generation by inner-shell atomic processes induced by < 25 fs, > 1 J pulses of high power CPA lasers
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Ultrafast coherent and incoherent X-ray generation by inner-shell atomic processes induced by < 25 fs, > 1 J pulses of high power CPA lasers

机译:大功率CPA激光器的<25 fs,> 1 J脉冲引起的内壳原子过程超快相干和非相干X射线生成

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摘要

A new class of keV X-ray lasers based on specific inner-shell atomic transitions is analyzed. It is shown that population inversion between inner-shell vacancy levels of medium-Z elements can be created using only electron collisional ionization, or by using fast, incoherent X-ray pumping if the decay of the lower states is mediated by Coster-Kronig or super-Coster-Kronig processes. The requirements of extremely fast energy deposition on a target in order to compete with the inherently fast (0.1-20 fs) atomic processes can be fulfilled by use of an ultrahigh peak power laser system with ultrashort pulse duration. A state-of-the-art chirped pulse amplification (CPA) laser system delivering more than 1 J of optical energy in less than 25 fs with 10 Hz repetition rate is described. The laser system has also been used to produce high-brightness, narrow-linewidth incoherent X-rays that are optimal for time dependent X-ray diffraction studies. The design of sandwiched multilayer target structure and possible experimental configurations for effective production of coherent X-ray radiation are suggested. Preliminary experimental results of ultrafast (similar to 25 fs), high intensity (>10(19) W/cm(2)) excitation of layered metal targets show anomalous enhancement of specific Ti lines in the 2-14 nm wavelength range. [References: 48]
机译:分析了基于特定内壳原子跃迁的新型keV X射线激光器。结果表明,仅通过电子碰撞电离,或如果较低态的衰变是由Coster-Kronig介导的,则可以使用快速非相干X射线泵浦来产生中等Z元素内壳空位之间的种群反转。超级Coster-Kronig过程。为了与固有的快速(0.1-20 fs)原子过程竞争,需要在靶上进行极快的能量沉积,这可以通过使用具有超短脉冲持续时间的超高峰值功率激光系统来满足。描述了一种最新的线性调频脉冲放大(CPA)激光系统,该系统在不到25 fs的时间内以10 Hz的重复频率提供了1 J以上的光能。激光系统还已经用于产生高亮度,窄线宽的非相干X射线,这些X射线对于随时间变化的X射线衍射研究是最佳的。提出了用于有效产生相干X射线辐射的夹层多层靶结构的设计和可能的实验配置。层状金属靶材的超快(类似于25 fs),高强度(> 10(19)W / cm(2))激发的初步实验结果显示,特定Ti线在2-14 nm波长范围内异常增强。 [参考:48]

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