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Extreme ultraviolet transient absorption of solids from femtosecond to attosecond timescales [Invited]

机译:从飞秒到十亿分之一秒的时间范围内,固体的极端紫外线瞬态吸收[受邀]

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摘要

High-harmonic generation (HHG) produces ultrashort pulses of extreme ultraviolet radiation (XUV), which can be used for pump-probe transient absorption spectroscopy in metal oxides, semiconductors, and dielectrics. Femtosecond transient absorption on iron and cobalt oxides identifies ligand-to-metal charge transfer as the main spectroscopic transition, rather than metal-to-metal charge transfer or d-d transitions, upon photoexcitation in the visible. In silicon, attosecond transient absorption reveals that electrons tunnel into the conduction band from the valence band under strong-field excitation, to energies as high as 6 eV above the conduction band minimum. Extensions of these experiments to other semiconductors, such as germanium, and other transition metal oxides, such as vanadium dioxide, are discussed. Germanium is of particular interest because it should be possible to follow both electron and hole dynamics in a single measurement using transient XUV absorption. (C) 2016 Optical Society of America
机译:高谐波产生(HHG)产生极短脉冲的极紫外辐射(XUV),可用于金属氧化物,半导体和电介质中的泵浦探针瞬态吸收光谱。飞秒在铁和钴氧化物上的瞬态吸收将可见光中的光激发识别为配体到金属的电荷转移是主要的光谱跃迁,而不是金属到金属的电荷转移或d-d跃迁。在硅中,阿秒瞬态吸收表明,电子在强场激发下从价带隧穿到导带中,直至高于导带最小值的6 eV。讨论了将这些实验扩展到其他半导体(例如锗)和其他过渡金属氧化物(例如二氧化钒)的方法。锗特别受关注,因为使用瞬态XUV吸收可以在一次测量中同时跟踪电子和空穴动力学。 (C)2016美国眼镜学会

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