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Enhanced high-order harmonic generation from Xe, Kr, and Ar in a capillary discharge

机译:通过毛细管放电中的Xe,Kr和Ar增强的高次谐波生成

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We report the use of a preionized medium created by a capillary discharge to extend the cutoff photon energy in high-order harmonic generation. The observed enhancements result from a combination of reduced ionization energy loss and reduced ionization-induced defocusing of the driving laser. We observe harmonic emission from Xe up to a photon energy of 160 eV, and we extend this technique to other noble gases, observing photons with energies up to 170 eV from Kr and 275 eV from Ar. The discharge plasma also provides a means to spectrally tune the harmonics by tailoring the initial level of ionization of the medium. Our results are interpreted using a hydrodynamic-atomic physics model of the discharge plasma. This work demonstrates that capillary discharges are a versatile and general method for generating harmonics, in particular from ions. Finally, this approach should be scalable to efficiently generate coherent light at much shorter wavelengths, in combination with phase-matching techniques.
机译:我们报告了使用由毛细管放电产生的预电离介质来扩展高次谐波产生中的截止光子能量。观察到的增强是由于减少电离能量损失和减少电离引起的驱动激光器散焦的结果。我们观察到了从Xe发出的谐波,直至光子能量达到160 eV,并将这一技术扩展到其他稀有气体,观察到了Kr和Ar的能量分别高达170 eV和275 eV的光子。放电等离子体还提供了一种通过调整介质电离的初始水平来对谐波进行频谱调谐的方法。我们的结果使用放电等离子体的流体动力学原子物理学模型来解释。这项工作表明毛细管放电是一种产生谐波的通用且通用的方法,特别是从离子中产生谐波。最后,结合相位匹配技术,该方法应该可扩展以有效地产生短得多的波长的相干光。

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