Abstract
Optical Kerr effect spectroscopy has been employed to study the behavior of six symmetric-top liquids (acetonitrile, acetonitrile-d3, benzene, carbon disulfide, chloroform, and methyl iodide) over a broad range of temperatures. In all of the liquids, an exponential intermolecular response is observed on a time scale of a few hundreds of femtoseconds. Comparison of the temperature dependence of the time scale of this relaxation with the viscosity and single-molecule and collective orientational times in the liquids suggests that the exponential relaxation arises from motional narrowing.
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@article{Loughnane_1999, title={Exponential intermolecular dynamics in optical Kerr effect spectroscopy of small-molecule liquids}, volume={111}, ISSN={1089-7690}, url={http://dx.doi.org/10.1063/1.479544}, DOI={10.1063/1.479544}, number={6}, journal={The Journal of Chemical Physics}, publisher={AIP Publishing}, author={Loughnane, Brian J. and Scodinu, Alessandra and Farrer, Richard A. and Fourkas, John T. and Mohanty, Udayan}, year={1999}, month=aug, pages={2686–2694} }