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Extreme nonlinear strong-field photoemission from carbon nanotubes

机译:碳纳米管的极端非线性强场光发射

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摘要

Strong-field photoemission produces attosecond (10−18 s) electron pulses that are synchronized to the waveform of the incident light. This nonlinear photoemission lies at the heart of current attosecond technologies. Here we report a new nonlinear photoemission behaviour—the nonlinearity in strong-field regime sharply increases (approaching 40th power-law scaling), making use of sub-nanometric carbon nanotubes and 800 nm pulses. As a result, the carrier-envelope phase sensitive photoemission current shows a greatly improved modulation depth of up to 100% (with a total modulation current up to 2 nA). The calculations reveal that the behaviour is an interplay of valence band optical-field emission with charge interaction, and the nonlinear dynamics can be tunable by changing the bandgap of carbon nanotubes. The extreme nonlinear photoemission offers a new means of producing extreme temporal-spatial resolved electron pulses, and provides a new design philosophy for attosecond electronics and photonics.
机译:强场光发射产生与入射光波形同步的阿秒(10 −18 s)电子脉冲。这种非线性光发射是当前原子技术的核心。在这里,我们报告了一种新的非线性光发射行为-利用亚纳米碳纳米管和800纳米脉冲,强场状态下的非线性急剧增加(接近第40幂律定标)。结果,载流子-相位相位敏感的光发射电流显示了高达100%的极大改进的调制深度(总调制电流高达2 nA)。计算表明,该行为是价带光场发射与电荷相互作用的相互作用,并且可以通过改变碳纳米管的带隙来调节非线性动力学。极端的非线性光发射提供了产生极端的时空分辨电子脉冲的新方法,并为阿秒电子学和光子学提供了新的设计原理。

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