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激光诱导相对论隧穿中的势垒下动力学

Under-the-barrier dynamics in laser-induced relativistic tunneling.

作者信息

Klaiber Michael, Yakaboylu Enderalp, Bauke Heiko, Hatsagortsyan Karen Z, Keitel Christoph H

机构信息

Max-Planck-Institut für Kernphysik, Saupfercheckweg 1, 69117 Heidelberg, Germany.

出版信息

Phys Rev Lett. 2013 Apr 12;110(15):153004. doi: 10.1103/PhysRevLett.110.153004. Epub 2013 Apr 9.

Abstract

The tunneling dynamics in relativistic strong-field ionization is investigated with the aim to develop an intuitive picture for the relativistic tunneling regime. We demonstrate that the tunneling picture applies also in the relativistic regime by introducing position dependent energy levels. The quantum dynamics in the classically forbidden region features two time scales, the typical time that characterizes the probability density's decay of the ionizing electron under the barrier (Keldysh time) and the time interval which the electron spends inside the barrier (Eisenbud-Wigner-Smith tunneling time). In the relativistic regime, an electron momentum shift as well as a spatial shift along the laser propagation direction arise during the under-the-barrier motion which are caused by the laser magnetic field induced Lorentz force. The momentum shift is proportional to the Keldysh time, while the wave-packet's spatial drift is proportional to the Eisenbud-Wigner-Smith time. The signature of the momentum shift is shown to be present in the ionization spectrum at the detector and, therefore, observable experimentally. In contrast, the signature of the Eisenbud-Wigner-Smith time delay disappears at far distances for pure quasistatic tunneling dynamics.

摘要

研究了相对论强场电离中的隧穿动力学,目的是为相对论隧穿机制建立一个直观的图像。我们通过引入位置依赖的能级证明了隧穿图像也适用于相对论机制。经典禁戒区域中的量子动力学具有两个时间尺度,一个是表征电离电子在势垒下概率密度衰减的典型时间(凯尔迪什时间),另一个是电子在势垒内花费的时间间隔(艾森布德 - 维格纳 - 史密斯隧穿时间)。在相对论机制中,在势垒下运动期间会出现电子动量偏移以及沿激光传播方向的空间偏移,这是由激光磁场诱导的洛伦兹力引起的。动量偏移与凯尔迪什时间成正比,而波包的空间漂移与艾森布德 - 维格纳 - 史密斯时间成正比。动量偏移的特征在探测器处的电离谱中显示出来,因此可以通过实验观测到。相比之下,对于纯准静态隧穿动力学,艾森布德 - 维格纳 - 史密斯时间延迟的特征在远距离处消失。

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