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20182022
most citedMeasuring Coulomb-Induced Ionization Time Lag with a Calibrated Attoclock

4 citations · 6 across the 5 of their papers we have counts for

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physics.atom-ph20221 cited

Coulomb scattering inducing time lag in strong-field tunneling ionization

Y. G. Peng, J. Y. Che, C. Chen +2

We study ionization of atoms in strong elliptically-polarized laser fields. We focus on the physical origin of the offset angle in the photoelectron momentum distribution and its p…

physics.atom-ph2022

Single-photon ionization of aligned H with lower photon energy

F. B. Zhang, J. Y. Che, W. Y. Li +2

We study single-photon ionization of aligned H in a high-frequency low-intensity laser field. We focus on the case where the laser frequency is not far larger than the ioniza…

physics.atom-ph20214 cited

Measuring Coulomb-Induced Ionization Time Lag with a Calibrated Attoclock

J. Y. Che, C. Chen, S. Wang +2

Electrons in atoms and molecules can not react immediately to the action of intense laser field. A time lag (about 100 attoseconds) between instants of the field maximum and the io…

physics.atom-ph2021

High ellipticity of harmonics from molecules in strong laser fields of small ellipticity

F. J. Sun, C. Chen, W. Y. Li +3

We study high-order harmonic generation (HHG) from aligned molecules in strong elliptically polarized laser fields numerically and analytically. Our simulations show that the spect…

physics.atom-ph2020

Local most-probable routes and classic-quantum correspondence in strong-field two-dimensional tunneling ionization

C. Chen, X. X. Ji, W. Y. Li +2

We study ionization of atoms in strong two-dimensional (2D) laser fields with various forms, numerically and analytically. We focus on the local most-probable tunneling routes (som…

physics.atom-ph2019

Tracing origins of asymmetric momentum distribution for polar molecules in strong linearly-polarized laser fields

S. Wang, J. Y. Che, C. Chen +2

We study the ionization dynamics of oriented HeH in strong linearly-polarized laser fields by numerically solving the time-dependent Schrödinger equation. The calculated photoe…