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氩气中单光子和双光子电离的阿秒相干控制

Attosecond Coherent Control of Single and Double Photoionization in Argon.

作者信息

Hogle C W, Tong X M, Martin L, Murnane M M, Kapteyn H C, Ranitovic P

机构信息

JILA and Department of Physics, University of Colorado and NIST, Boulder, Colorado 80309, USA.

Division of Materials Science, Faculty of Pure and Applied Science, University of Tsukuba, Ibaraki 305-8573, Japan.

出版信息

Phys Rev Lett. 2015 Oct 23;115(17):173004. doi: 10.1103/PhysRevLett.115.173004. Epub 2015 Oct 22.

Abstract

Ultrafast high harmonic beams provide new opportunities for coherently controlling excitation and ionization processes in atoms, molecules, and materials on attosecond time scales by employing multiphoton two-pathway electron-wave-packet quantum interferences. Here we use spectrally tailored and frequency tuned vacuum and extreme ultraviolet harmonic combs, together with two phase-locked infrared laser fields, to show how the total single and double photoionization yields of argon can be coherently modulated by controlling the relative phases of both optical and electronic-wave-packet quantum interferences. This Letter is the first to apply quantum control techniques to double photoionization, which is a fundamental process where a single, high-energy photon ionizes two electrons simultaneously from an atom.

摘要

超快高次谐波光束通过利用多光子双路径电子波包量子干涉,为在阿秒时间尺度上相干控制原子、分子和材料中的激发和电离过程提供了新机会。在此,我们使用光谱定制和频率调谐的真空及极紫外谐波梳,结合两个锁相红外激光场,展示了如何通过控制光学和电子波包量子干涉的相对相位,对氩的单光致电离和双光致电离总产率进行相干调制。本信函首次将量子控制技术应用于双光致电离,双光致电离是一个基本过程,即单个高能光子同时从一个原子中电离出两个电子。

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