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- W2043686952 abstract "The nonlinear response of xenon gas due to a near-resonant two-photon excitation at the 5${mathit{p}}^{6}$ $^{1}$${mathit{S}}_{0}$ensuremath{rightarrow}6p[1/2${]}_{0}$ transition with a femtosecond KrF-excimer-laser system is investigated for the intensity range ${10}^{10}$--${10}^{15}$ W/${mathrm{cm}}^{2}$. Stimulated hyper-Raman scattering and amplified spontaneous emission of atomic xenon are observed at wavelengths around 823 and 828 nm. These emissions are superimposed by four-wave parametric-oscillation processes leading to strong ultrashort continuum radiation in the visible and near-infrared (650--850 nm), uv (185--400 nm), and vacuum ultraviolet (147--155 nm) spectral ranges with output powers up to 100 MW. From difference-frequency-mixing experiments microscopic nonlinear susceptibilities in the range of ensuremath{Vert}${mathrm{ensuremath{chi}}}^{(3)}$ensuremath{Vert}=${10}^{mathrm{ensuremath{-}}48}$ to ${10}^{mathrm{ensuremath{-}}50}$ ${mathrm{m}}^{5}$/${mathrm{V}}^{2}$ have been determined, which are in good agreement with calculations." @default.
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- W2043686952 date "1992-09-01" @default.
- W2043686952 modified "2023-09-27" @default.
- W2043686952 title "Nonlinear-optical processes in the near-resonant two-photon excitation of xenon by femtosecond KrF-excimer-laser pulses" @default.
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- W2043686952 doi "https://doi.org/10.1103/physreva.46.2707" @default.
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