Saturation dip analysis in dense rubidium vapor separates collision width from static width, yielding a density-independent ratio consistent with the Leegwater-Mukamel many-body broadening theory.
Holstein, Imprisonment of resonance radiation in gases
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Collision and static widths of self-broadened line shapes in optically saturated high-density atomic vapor
Saturation dip analysis in dense rubidium vapor separates collision width from static width, yielding a density-independent ratio consistent with the Leegwater-Mukamel many-body broadening theory.