Wachter Georg, Lemell Christoph, Burgdörfer Joachim, Sato Shunsuke A, Tong Xiao-Min, Yabana Kazuhiro
Institute for Theoretical Physics, Vienna University of Technology, 1040 Vienna, Austria, EU.
Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba 305-8571, Japan.
Phys Rev Lett. 2014 Aug 22;113(8):087401. doi: 10.1103/PhysRevLett.113.087401. Epub 2014 Aug 18.
We theoretically investigate the generation of ultrafast currents in insulators induced by strong few-cycle laser pulses. Ab initio simulations based on time-dependent density functional theory give insight into the atomic-scale properties of the induced current signifying a femtosecond-scale insulator-metal transition. We observe the transition from nonlinear polarization currents during the laser pulse at low intensities to tunnelinglike excitation into the conduction band at higher laser intensities. At high intensities, the current persists after the conclusion of the laser pulse considered to be the precursor of the dielectric breakdown on the femtosecond scale. We show that the transferred charge sensitively depends on the orientation of the polarization axis relative to the crystal axis, suggesting that the induced charge separation reflects the anisotropic electronic structure. We find good agreement with very recent experimental data on the intensity and carrier-envelope phase dependence [A. Schiffrin et al., Nature (London) 493, 70 (2013).
我们从理论上研究了由强少周期激光脉冲在绝缘体中诱导产生的超快电流。基于含时密度泛函理论的从头算模拟深入了解了诱导电流的原子尺度特性,这意味着飞秒尺度的绝缘体 - 金属转变。我们观察到从低强度激光脉冲期间的非线性极化电流到更高激光强度下进入导带的类隧穿激发的转变。在高强度下,电流在激光脉冲结束后仍然存在,被认为是飞秒尺度介电击穿的前兆。我们表明转移电荷敏感地取决于极化轴相对于晶体轴的取向,这表明诱导电荷分离反映了各向异性的电子结构。我们发现与最近关于强度和载波包络相位依赖性的实验数据[A. Schiffrin等人,《自然》(伦敦)493, 70 (2013)]有很好的一致性。