Attosecond Ionization Time Delays in Strong-Field Physics

Fuente: arXiv
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Main Authors: Ma, Yongzhe, Ni, Hongcheng, Wu, Jian
Format: Preprint
Published: 2023
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author Ma, Yongzhe
Ni, Hongcheng
Wu, Jian
author_facet Ma, Yongzhe
Ni, Hongcheng
Wu, Jian
contents Electronic processes within atoms and molecules reside on the timescale of attoseconds. Recent advances in the laser-based pump-probe interrogation techniques have made possible the temporal resolution of ultrafast electronic processes on the attosecond timescale, including photoionization and tunneling ionization. These interrogation techniques include the attosecond streak camera, the reconstruction of attosecond beating by interference of two-photon transitions, and the attoclock. While the former two are usually employed to study photoionization processes, the latter is typically used to investigate tunneling ionization. In this Topical Review, we briefly overview these timing techniques towards an attosecond temporal resolution of ionization processes in atoms and molecules under intense laser fields. In particular, we review the backpropagation method, which is a novel hybrid quantum-classical approach towards full characterization of tunneling ionization dynamics. Continued advances in the interrogation techniques promise to pave the pathway towards the exploration of ever faster dynamical processes on an ever shorter timescale.
format Preprint
id arxiv_https___arxiv_org_abs_2310_08250
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Attosecond Ionization Time Delays in Strong-Field Physics
Ma, Yongzhe
Ni, Hongcheng
Wu, Jian
Atomic Physics
Electronic processes within atoms and molecules reside on the timescale of attoseconds. Recent advances in the laser-based pump-probe interrogation techniques have made possible the temporal resolution of ultrafast electronic processes on the attosecond timescale, including photoionization and tunneling ionization. These interrogation techniques include the attosecond streak camera, the reconstruction of attosecond beating by interference of two-photon transitions, and the attoclock. While the former two are usually employed to study photoionization processes, the latter is typically used to investigate tunneling ionization. In this Topical Review, we briefly overview these timing techniques towards an attosecond temporal resolution of ionization processes in atoms and molecules under intense laser fields. In particular, we review the backpropagation method, which is a novel hybrid quantum-classical approach towards full characterization of tunneling ionization dynamics. Continued advances in the interrogation techniques promise to pave the pathway towards the exploration of ever faster dynamical processes on an ever shorter timescale.
title Attosecond Ionization Time Delays in Strong-Field Physics
topic Atomic Physics
url https://arxiv.org/abs/2310.08250