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首页> 外文期刊>Transactions of the Japan Society for Computational Engineering and Science >Energetics and Dynamics of Laser-Assisted Field Emission from Silicene Nanoribbons: Time-Dependent First-Principles Study
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Energetics and Dynamics of Laser-Assisted Field Emission from Silicene Nanoribbons: Time-Dependent First-Principles Study

机译:硅纳米带的激光辅助场发射的能量学和动力学:时变的第一性原理研究

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摘要

We investigate laser-assisted field emission (LAFE) from a silicene nanoribbon (SiNR) using time-dependent density functional theory (TDDFT) simulation. The emission mechanism in the present study is considered to be over-barrier photoemission and is found to be governed by electronic dipole transitions, the characteristics of the excited states, and the energy levels of the excited states relative to the potential hump. The qualitative features of emission from the SiNR are similar to those from graphene nanoribbons (GNRs). The emission currents from SiNR, however, are found to be much larger than those from GNR for the same laser parameters in spite of a larger work function for SiNR. We reveal the emission currents in real time and space on an atomic scale, and observed current being driven back and forth in the early stage of emission. We further elucidate the dynamical correlation among the laser pulse, the Kohn-Sham potential and emission currents wiggling under the ponderomotive force. [DOI: 10.1380/ejssnt.2015.115]
机译:我们使用时变密度泛函理论(TDDFT)模拟研究了硅纳米带(SiNR)的激光辅助场发射(LAFE)。在本研究中,发射机理被认为是过势垒光发射,并且发现其受电子偶极跃迁,激发态的特性以及激发态相对于势峰的能级的控制。 SiNR的发射的定性特征与石墨烯纳米带(GNR)的定性特征相似。然而,尽管SiNR的功函较大,但对于相同的激光参数,发现来自SiNR的发射电流要比来自GNR的发射电流大得多。我们以原子尺度实时和空间地揭示了发射电流,并观察到电流在发射的早期被来回驱动。我们进一步阐明了在重动力作用下激光脉冲,Kohn-Sham势和摆动的发射电流之间的动力学关系。 [DOI:10.1380 / ejssnt.2015.115]

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