Single-photon ionization of H$_2^+$ in near-circular laser fields with lower photon energy

Fuente: arXiv
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Main Authors: Chen, Z. Y., Shen, S. Q., Liu, M. Q., Che, J. Y., Chen, Y. J.
Format: Preprint
Published: 2025
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author Chen, Z. Y.
Shen, S. Q.
Liu, M. Q.
Che, J. Y.
Chen, Y. J.
author_facet Chen, Z. Y.
Shen, S. Q.
Liu, M. Q.
Che, J. Y.
Chen, Y. J.
contents We study single-photon ionization of aligned H$_2^+$ in low-intensity near-circular laser fields with lower photon energy numerically and analytically. The photoelectron momentum distribution (PMD) within the laser polarization plane, obtained by numerical simulations, shows a remarkable offset angle, which changes with changing the internuclear distance and the laser frequency. This phenomenon is different from that observed in recent experiments [Science 370, 339 (2020)] which is related to the PMD along the propagation direction of the laser. This phenomenon holds even for H$_2^+$ with short-range Coulomb potentials but disappears for atoms, different from that observed in attoclock experiments. We show that the molecular Coulomb potential near the two atomic centers plays an important role here and theory models associated with more accurate continuum wave function of the molecule are needed for reproducing this phenomenon. This phenomenon can be useful for ultrafast probing of molecules with high resolution of several attoseconds or even zeptoseconds.
format Preprint
id arxiv_https___arxiv_org_abs_2505_07432
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Single-photon ionization of H$_2^+$ in near-circular laser fields with lower photon energy
Chen, Z. Y.
Shen, S. Q.
Liu, M. Q.
Che, J. Y.
Chen, Y. J.
Atomic Physics
Optics
We study single-photon ionization of aligned H$_2^+$ in low-intensity near-circular laser fields with lower photon energy numerically and analytically. The photoelectron momentum distribution (PMD) within the laser polarization plane, obtained by numerical simulations, shows a remarkable offset angle, which changes with changing the internuclear distance and the laser frequency. This phenomenon is different from that observed in recent experiments [Science 370, 339 (2020)] which is related to the PMD along the propagation direction of the laser. This phenomenon holds even for H$_2^+$ with short-range Coulomb potentials but disappears for atoms, different from that observed in attoclock experiments. We show that the molecular Coulomb potential near the two atomic centers plays an important role here and theory models associated with more accurate continuum wave function of the molecule are needed for reproducing this phenomenon. This phenomenon can be useful for ultrafast probing of molecules with high resolution of several attoseconds or even zeptoseconds.
title Single-photon ionization of H$_2^+$ in near-circular laser fields with lower photon energy
topic Atomic Physics
Optics
url https://arxiv.org/abs/2505.07432