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0.5-keV Soft X-ray attosecond continua

机译:0.5keV软X射线亚秒连续

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摘要

Attosecond light pulses in the extreme ultraviolet have drawn a great deal of attention due to their ability to interrogate electronic dynamics in real time. Nevertheless, to follow charge dynamics and excitations in materials, element selectivity is a prerequisite, which demands such pulses in the soft X-ray region, above 200 eV, to simultaneously cover several fundamental absorption edges of the constituents of the materials. Here, we experimentally demonstrate the exploitation of a transient phase matching regime to generate carrier envelope controlled soft X-ray supercontinua with pulse energies up to 2.9±0.1 pJ and a flux of (7.3±0.1) × 107 photons per second across the entire water window and attosecond pulses with 13 as transform limit. Our results herald attosecond science at the fundamental absorption edges of matter by bridging the gap between ultrafast temporal resolution and element specific probing.
机译:极紫外光下的亚秒级光脉冲由于能够实时询问电子动力学而备受关注。然而,为了跟随材料中的电荷动力学和激发,元素选择性是一个先决条件,它要求在200 eV以上的软X射线区域中出现此类脉冲,以同时覆盖材料成分的几个基本吸收边缘。在这里,我们通过实验证明了利用瞬态相位匹配机制来生成载流子包络控制的软X射线超连续谱,其脉冲能量高达2.9±0.1 pJ,通量为(7.3±0.1)×10 7 整个水窗和以13为变换极限的阿秒脉冲每秒的光子数。我们的研究成果弥合了超快时间分辨率和特定元素探测之间的鸿沟,从而在物质的基本吸收边缘宣告了秒文学的发展。

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