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Studies of multiphoton production of vacuum-ultraviolet radiation in the rare gases

A. McPhersonDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAGeorge N. GibsonDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAHernán JaraDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAUlrich JohannDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAT. S. LukDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAI. A. McIntyreDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAK. BoyerDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USAC. K. RhodesDepartment of Physics, University of Illinois at Chicago, P.O. Box 4348, Chicago, Illinois 60680 USA
1987en
ABI

Аннотация

Measurements of the vacuum-ultraviolet (<80-nm) radiation produced by intense ultraviolet (248-nm) irradiation (1015–1016 W/cm2) of rare gases have revealed the copious presence of both harmonic radiation and fluorescence from excited levels. The highest harmonic observed was the seventeenth (14.6 nm) in Ne, the shortest wavelength ever produced by that means. Strong fluorescence was seen from ions of Ar, Kr, and Xe, with the shortest wavelengths observed being below 12 nm. Furthermore, radiation from inner-shell excited configurations in Xe, specifically the 4d95s5p → 4d105s manifold of Xe7+ at ~17.7 nm, was detected. These experimental findings, in alliance with other studies concerning multielectron processes, give evidence for a role of electron correlations in a direct nonlinear process of inner-shell excitation.

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