平行双色激光脉冲控制氩原子非顺序双电离机制

Thu D. H. Truong, H. Tran, Hanh H. Nguyen, V. Pham
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摘要

简介:近年来,物理学家对非顺序双电离(NSDI)过程非常感兴趣,因为它提供了原子和分子壳层中电子之间通过碰撞过程相互作用的信息。从技术上讲,近红外激光脉冲的发展使其成为研究原子和分子中电子相关效应的最有用的工具之一。此外,平行双色激光脉冲在强激光场中是一种有效的重收过程控制工具。本文利用波长分别为2400 nm和1200 nm的PTC激光脉冲来控制两个电子的运动,研究了电离机制在氩原子NSDI中的作用。我们研究了电离机制和两个电子的相关动力学对两组分激光器从0到2p的相对相位变化的贡献。方法:采用二维经典系综模型模拟两个电子运动受牛顿定律支配的NSDI过程。结果:相关的双电子动量分布、回碰撞时间和回碰撞瞬间后的能量分布对两束激光的相对相位异常敏感。为了调制电离机制,调谐两个激光器之间的相对相位。结论:平行双色激光脉冲是控制非顺序双电离中相关电子动力学的有效方法。
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Controlling nonsequential double ionization mechanisms of argon atoms by parallel two-color laser pulses
Introduction: Recently, physicists have been interested in the nonsequential double ionization (NSDI) process since it provides information about the interaction between electrons in the atomic andmolecularshellsthroughtherecollistionprocess. Technically, thedevelopmentofnear-infrared laser pulses has made them one of the most useful tools for studying the electron correlation effect in atoms and molecules. Furthermore, the parallel two-color (PTC) laser pulse is a useful instrument for controlling the process of recollision in a strong laser field. In this paper, with the aim of investigating the role of ionization mechanisms governing the NSDI of argon atoms, we use a PTC laser pulse with wavelengths of 2400 nm and 1200 nm to control the motion of two electrons. We investigate the contribution of ionization mechanisms as well as the correlation dynamics of two electrons upon the change in relative phase between the two component lasers from 0 to 2 p . Method: The two-dimensional classical ensemble model is used to simulate the NSDI process, in which the motion of two electrons is governed by Newton's law. Results: The correlated two-electron momentum distribution, recolliding time, and energy distribution after the returning electron's recolliding moment are extraordinarily sensitive to the relative phase of the two lasers. To modulate the ionization mechanisms, the relative phase between two lasers is tuned. Conclusion: The results demonstrate that parallel two-color laser pulses are an effective method of controlling the correlated electron dynamics in nonsequential double ionization.
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