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- W4385667311 abstract "Based on the expansion of the time-dependent Dirac equation in the second order on the reciprocal of the speed of light, we derive a simplified second-order time-dependent Pauli equation (second-TDPE) for single-active-electron systems, in which the time-dependent spin-orbit interaction is taken into account. A numerical method is presented for calculating the observables for atoms interacting with the electric fields of laser pulses. It is shown that the energy-level splitting between the ${p}_{+}^{ensuremath{uparrow}}$ and ${p}_{+}^{ensuremath{downarrow}}$ (as well as the ${p}_{ensuremath{-}}^{ensuremath{uparrow}}$ and ${p}_{ensuremath{-}}^{ensuremath{downarrow}})$ orbitals can be reproduced by the spin-orbit coupling (SOC) term of the second-TDPE. By numerically solving the second-TDPE, we demonstrate the SOC effect in single-photon, multiphoton, and tunneling ionization of atomic Kr with valence $p$ orbitals. In particular, a few counterintuitive strong-field ionization phenomena are discussed and analyzed. The present work provides a convenient way to explore the SOC effect in strong-field interactions." @default.
- W4385667311 created "2023-08-09" @default.
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- W4385667311 date "2023-08-08" @default.
- W4385667311 modified "2023-10-14" @default.
- W4385667311 title "Effect of spin-orbit coupling in laser-induced ionization of atoms" @default.
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- W4385667311 doi "https://doi.org/10.1103/physreva.108.023113" @default.
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