Abstract

Dopant low- n Rydberg states perturbed by dense CF 4 and CH 4 were investigated using vacuum ultraviolet photoabsorption spectroscopy at noncritical temperatures and on an isotherm near (+0.5 °C) the perturber critical temperature. A full analysis of these data using semi-classical line shape theory was performed. The perturber induced energy shift was extracted from the simulated bands and demonstrates a perturber critical point effect on the energy of low- n Rydberg states in these molecular fluids.

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