Application of norm-conserving pseudopotentials to intense laser-matter interactions

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Abstract

We investigate the applicability of norm-conserving pseudopotentials to intense laser-matter interactions by performing time-dependent density functional theory simulations with an all-electron potential and with norm-conserving pseudopotentials. We find pseudopotentials to be reliable for the simulation of above-threshold ionization over a broad range of laser intensities both for the total ionization probability and the photoelectron energy spectrum. For the simulation of high-order-harmonic generation, pseudopotentials are shown to be applicable for lower-order harmonics in the spectral range in which the one-photon recombination dipole-matrix element can be recovered by the pseudopotential calculation.

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Tong, X. M., Wachter, G., Sato, S. A., Lemell, C., Yabana, K., & Burgdörfer, J. (2015). Application of norm-conserving pseudopotentials to intense laser-matter interactions. Physical Review A - Atomic, Molecular, and Optical Physics, 92(4). https://doi.org/10.1103/PhysRevA.92.043422

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