Direct Visualization of Deforming Atomic Wavefunction in Ultraintense High-Frequency Laser Pulses

Jintai Liang, Yueming Zhou, Yijie Liao, Weizhou Jiang, Min Li, P. Lu
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引用次数: 10

Abstract

Interaction of intense laser fields with atoms distorts the bound-state electron cloud. Tracing the temporal response of the electron cloud to the laser field is of fundamental importance for understanding the ultrafast dynamics of various nonlinear phenomena of matter, but it is particularly challenging. Here, we show that the ultrafast response of the atomic electron cloud to the intense high-frequency laser pulses can be probed with the attosecond time-resolved photoelectron holography. In this method, an infrared laser pulse is employed to trigger tunneling ionization of the deforming atom. The shape of the deforming electron cloud is encoded in the hologram of the photoelectron momentum distribution. As a demonstration, by solving the time-dependent Schrödinger equation, we show that the adiabatic deforming of the bound-state electron cloud, as well as the nonadiabatic transition among the distorted states, is successfully tracked with attosecond resolution. Our work films the formation process of the metastable Kramers-Henneberger states in the intense high-frequency laser pulses. This establishes a novel approach for time-resolved imaging of the ultrafast bound-state electron processes in intense laser fields.
超高频激光脉冲中形变原子波函数的直接可视化
强激光场与原子的相互作用会扭曲束缚态电子云。追踪电子云对激光场的时间响应对于理解各种非线性物质现象的超快动力学具有重要意义,但它特别具有挑战性。在这里,我们证明了原子电子云对强高频激光脉冲的超快响应可以用阿秒时间分辨光电子全息术来探测。该方法采用红外激光脉冲触发变形原子的隧穿电离。变形电子云的形状被编码在光电子动量分布的全息图中。作为证明,通过求解与时间相关的Schrödinger方程,我们证明了束缚态电子云的绝热变形以及扭曲态之间的非绝热跃迁,可以成功地以阿秒分辨率跟踪。我们的工作记录了在强高频激光脉冲中亚稳态Kramers-Henneberger态的形成过程。这为强激光场中超快束缚态电子过程的时间分辨成像建立了一种新的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
11.40
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