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- W2017358554 abstract "We present numerical solutions of the time-dependent Schrodinger equation in the single-active-electron approximation and calculate wave functions for photoionization of helium exposed to 800 nm light. Electron spectra show $ensuremath{sim}200$ peaks up to 272 eV, due to above-threshold ionization. The simulations confirm the existence of a wide, flat plateau in the electron spectrum due to backscattering, between 3 and 8 times the ponderomotive energy. Electrons in this range originate almost exclusively through resonance enhancement by quivering excited states, which in turn are populated by light-induced tunneling from the ground state." @default.
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- W2017358554 title "Tunneling Excitation to Resonant States in Helium as Main Source of Superponderomotive Photoelectrons in the Tunneling Regime" @default.
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- W2017358554 doi "https://doi.org/10.1103/physrevlett.83.3158" @default.
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