Effect of nuclear motion on high-order harmonic generation of H in intense ultrashort laser pulses
arXiv:1407.5458 · doi:10.1103/PhysRevA.90.043411
Abstract
High-order harmonic generation is investigated for H and D with and without Born-Oppenheimer approximation by numerical solution of full dimensional electronic time-dependent Schrödinger equation under 4-cycle intense laser pulses of 800 nm wavelength and =4, 5, 7, 10 Wcm intensities. For most harmonic orders, the intensity obtained for D is higher than that for H, and the yield difference increases as the harmonic order increases. Only at some low harmonic orders, H generates more intense harmonics compared to D. The results show that nuclear motion, ionization probability and system dimensionality must be simultaneously taken into account to properly explain the isotopic effects on high-order harmonic generation and to justify experimental observations.
7 pages, 5 figures
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Cited by in corpus (3)
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