Wall-collision line broadening of molecular oxygen within nanoporous materials

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Abstract

Wall-collision broadening of near-infrared absorption lines of molecular oxygen confined in nanoporous zirconia is studied by employing high-resolution diode-laser spectroscopy. The broadening is studied for pores of different sizes under a range of pressures, providing new insights on how wall collisions and intermolecular collisions influence the total spectroscopic line profile. The pressure series show that wall-collision broadening is relatively more prominent under reduced pressures, enabling sensitive means to probe pore sizes of porous materials. In addition, we show that the total wall-collision-broadened profile strongly deviates from a Voigt profile and that wall-collision broadening exhibits an additive-like behavior to the pressure and Doppler broadening. © 2011 American Physical Society.

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Xu, C. T., Lewander, M., Andersson-Engels, S., Adolfsson, E., Svensson, T., & Svanberg, S. (2011). Wall-collision line broadening of molecular oxygen within nanoporous materials. Physical Review A - Atomic, Molecular, and Optical Physics, 84(4). https://doi.org/10.1103/PhysRevA.84.042705

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