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Carrier-envelope phase effects in graphene

机译:石墨烯中的载体包络相位效应

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摘要

We numerically study the interaction of a terahertz pulse with monolayer graphene. We observe that the electron momentum density is affected by the carrier-envelope phase (CEP) of the single- to few-cycle terahertz laser pulse that induces the electron dynamics. In particular, we see strong asymmetric electron momentum distributions for non-zero values of the CEP. We explain the origin of the asymmetry within the adiabatic-impulse model by finding conditions to reach minimal adiabatic gap between the valence band and the conduction band. We discuss how these conditions and the interference pattern, emanating from successive non-adiabatic transitions at this minimal gap, affect the electron momentum density and how they are modified by the CEP. This opens the door to control fundamental time-dependent electron dynamics in the tunneling regime in Dirac materials. Also, this control suggests a way to measure the CEP of a terahertz laser pulse when it interacts with condensed matter systems. (c) 2018 Optical Society of America
机译:我们在数值上研究了三赫兹脉冲与单层石墨烯的相互作用。我们观察到电子动量密度受到单次到几个周期的太赫兹激光脉冲的载体包络相(CEP)的影响,该激光脉冲引起电子动力学。特别是,我们看到CEP的非零值的强不对称电子动量分布。通过发现条件来解释绝热 - 脉冲模型内不对称的起源,以达到价带和传导带之间的最小绝热间隙。我们讨论这些条件和干扰图案如何在这种最小间隙中从连续的非绝热转变产生,影响电子动量密度以及它们是由CEP改性的方式。这将打开门以控制DirAC材料中隧道状态中的基本时间依赖的电子动力学。此外,该控制表明,当它与冷凝物系统相互作用时测量Terahertz激光脉冲的CEP的方法。 (c)2018年光学学会

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