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  6. Infrared-active vibron bands associated with substitutional impurities in solid parahydrogen
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Infrared-active vibron bands associated with substitutional impurities in solid parahydrogen

Source Publication
Journal of Chemical Physics
Date Issued
January 1, 2003
Author(s)
Hinde, Robert
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/16192
Abstract

We present a model for the line shapes of infrared-active Q1(0) vibron bands observed in solid parahydrogen doped with low concentrations of spherical substitutional impurities. The line shapes are highly sensitive to the H2 vibrational dependence of the dopant–H2 interaction. When this vibrational dependence is strong, the dopant can trap the infrared-active vibron in its first solvation shell; in this case, the trapped vibron manifests itself in the absorption spectrum as a narrow feature to the red of the pure solid’s vibron band.

Disciplines
Atomic, Molecular and Optical Physics
Biological and Chemical Physics
Chemistry
Physical Chemistry
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vibron.pdf

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58.53 KB

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Adobe PDF

Checksum (MD5)

96722a7f066a583596494b70dfc980fe


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