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Hole-burning spectroscopy of coordination compounds

✍ Scribed by Hans Riesen


Book ID
104010915
Publisher
Elsevier Science
Year
2006
Tongue
English
Weight
512 KB
Volume
250
Category
Article
ISSN
0010-8545

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✦ Synopsis


Electronic transitions in condensed phases are subject to inhomogeneous broadening, caused by the variation of local fields. Even in extremely well defined crystals, this broadening is on the order of magnitude of 1 cm -1 (30 GHz), obscuring valuable information about the electronic structure. There are several laser-based techniques that can overcome the inhomogeneous broadening and the homogeneous (or natural) line width may be approached at low temperatures. This latter line width may be as narrow as 30 Hz (1 Γ— 10 -9 cm -1 ) at liquid helium temperatures. In this article an overview of spectral hole-burning mechanisms and their application to coordination compounds is given, and recent progress in chromium(III) systems is emphasized. In the past, the main subject of investigations by spectral hole-burning has been the temperature dependence of the homogeneous line width and ultimate spectral resolution was sought. However, even at moderate resolutions of ca. 30 MHz (0.001 cm -1 ),


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