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- W2050778864 abstract "Using the second-order Coulomb-corrected Volkov function as a continuum state, we derive quantum mechanically analytical formulas for the photoionization rate of hydrogen atoms irradiated by a linearly polarized electric field in the tunneling regime. From the analytical formula is directly drawn the important conclusion that the role of the first-order Coulomb correction is to reduce the ionization potential. As a result, the photoionization rate is enhanced compared with that in the absence of the Coulomb correction. In addition, the second-order correction modifies the Keldysh parameter, decreases the binding energy, and increases the photoionization rates relative to those of the first-order Coulomb correction. We estimate the effects of the respective Coulomb corrections on the resonance structure of the photoionization rate, Keldysh parameter, and ponderomotive energy." @default.
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- W2050778864 date "2002-11-18" @default.
- W2050778864 modified "2023-10-14" @default.
- W2050778864 title "Theoretical studies of the long-range Coulomb potential effect on photoionization by strong lasers" @default.
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- W2050778864 doi "https://doi.org/10.1103/physreva.66.053408" @default.
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