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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 81, 1994 - Issue 6
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Original Articles

High-frequency interaction-induced rototranslational wings of isotropic nitrogen spectra

, &
Pages 1353-1372 | Received 01 Jul 1993, Accepted 28 Sep 1993, Published online: 23 Aug 2006
 

Abstract

The isotropic rototranslational scattering of nitrogen gas is studied in the frequency range 300–600 cm-1, both theoretically and experimentally, at a density of 41 and 169 amagat. The isotropic double differential cross-section for scattered light is calculated theoretically considering first- and second-order dipole-induced dipole, first-order dipole-dipole-quadrupole, and dipole-induced octopole light scattering mechanisms as well as their cross contributions. The irreducible spherical form for the induced operator of these light scattering mechanisms was determined. Good comparison is found in the frequency range 300–450 cm-1 between the theoretical and experimental double differential cross-sections. When an exponential contribution [exp(-ν/ν0)] with ν0 = 118 cm-1 is considered to model very short-range light scattering mechanisms good comparison is found over the whole frequency range.

We dedicate this paper to the memory of the late Professor Stanisław Kielich, whose contribution to the theory of molecular optics and light scattering is lasting. To him we are indebted for the inspiration to undertake the present work.

We dedicate this paper to the memory of the late Professor Stanisław Kielich, whose contribution to the theory of molecular optics and light scattering is lasting. To him we are indebted for the inspiration to undertake the present work.

Notes

We dedicate this paper to the memory of the late Professor Stanisław Kielich, whose contribution to the theory of molecular optics and light scattering is lasting. To him we are indebted for the inspiration to undertake the present work.

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