Abstract
The electronic band structure of fluid krypton was studied by means of photoconductivity excitation spectra and vuv reflectivity spectra. The photoconduction threshold found at 11.55\ifmmode\pm\else\textpm\fi{}0.05 eV for liquid krypton near its triple point indicates the onset of transitions from the uppermost valence band to the lowest conduction band. By following the evolution of excitonic states with increasing density we show the excitons to be entities different from broadened and shifted atomic and molecular states.
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