Stokes Mueller Treatment of Artifacts in Natural Raman Optical Activity

Author:

Hecht L.1,Jordanov B.1,Schrader B.1

Affiliation:

1. Institut für Physikalische und Theoretische Chemie, Universität Essen GHS, FB 8, D-4300 Essen 1, FRG (L.H., B.S.); and Bulgarian Academy of Sciences, Institute of Organic Chemistry, 1113, Sofia, Bulgaria (B.J.)

Abstract

A description of Raman scattering based on the theory by Barron and on Stokes Mueller formalism was developed into a uniform mathematical calculus such that Raman scattering can now be easily represented by a simple phenomenological matrix. This matrix, the Mueller matrix of a modulator driven by a square-wave voltage, and the matrix for a laser regarded as a fictitious polarizer are presented for the first time. With the use of these three matrices and the ones for the analyzer, the polarizer, the linearly birefringent sample cell, the circularly birefringent sample, and the partially polarizing detector, the main reasons for the appearance of artifacts in Raman optical activity have been identified. On the basis of a calculation for right-angle scattering of an isotropic solution of chiral molecules, sources of artifacts appear to be the linear birefringence of the cell walls and of the modulator material. Phase-sensitive detection is found to observe Raman optical activity with a minimal number of artifacts.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

Reference39 articles.

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2. Nafie L. A., in Advances in Infrared and Raman Spectroscopy, Clark R. J. H., Hester R. E., Eds. (Heyden, London, 1984), Vol. 11, p. 49.

3. Nafie L. A., in Vibrational Spectra and Structure, Durig J. R., Ed. (Elsevier, Amsterdam, 1981), Vol. 10, p. 153.

4. Rayleigh and Raman scattering from optically active molecules

5. Nomenclature, Symbols, Units and their Usage in Spectrochemical Analysis-I. General Atomic Emission Spectroscopy

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