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- W4385363553 abstract "The spectrum of a bound state plays a crucial role in the field-induced tunneling ionization, as ionization is essentially a dressing dissipative process. Based on the Fano-resonance theory, a single Lorentzian spectrum can be approximately obtained for each bound state. The coupling transition between bound states enriches the spectrum and complicates the tunneling dynamics. Previous attempts to extract the spectrum characteristics of the tunneling system from the ionization rate required an artificial filter function, and only the spectrum characteristics of the ground state can be obtained. In this study, we achieve a two-level model by parametrizing the main peaks of the spectrum with a Lorentzian function. This model successfully reproduces the ionization rate. By matching the central positions and widths of the Fano-type peaks with the behaviors of the ionization rate, we establish the relations between the model parameters and the details of the spectral peaks, namely, the Fano-type peaks. Our work introduces a systematic method to obtain key information of the spectrum, which can be generalized to multiple-level systems." @default.
- W4385363553 created "2023-07-29" @default.
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- W4385363553 date "2023-07-27" @default.
- W4385363553 modified "2023-10-17" @default.
- W4385363553 title "Extracting the central positions and widths of Fano-type tunneling channels in a spectrum from the ionization rate" @default.
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- W4385363553 doi "https://doi.org/10.1103/physreva.108.013119" @default.
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