Raman intensities in covalent crystals: A bond-polarizability approach

Riccardo Tubino and Luigi Piseri
Phys. Rev. B 11, 5145 – Published 15 June 1975
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Abstract

A theoretical model for the calculation of the one- and two-phonon Raman scattering intensities (far from resonance) for covalent crystals is presented. Starting from Placzek's theory, the crystal polarizability is expressed as a sum of individual bond contributions. Instead of the usual "electron-phonon" and "electron-radiation" coupling constants, the Hamiltonian for the scattering process contains the bond polarizabilities and their derivatives with respect to the bond-stretching coordinates. The numerical value of such parameters has been obtained by Maradudin and Burstein from the experimentally known elasto-optic and electrostriction constants of the crystals. The two-phonon Raman spectrum of diamond is then calculated. The intensity trend is repoduced well and a number of interesting features are discussed. A new interpretation of the anomalous sharp line at the two-phonon cutoff is given.

  • Received 20 November 1974

DOI:https://doi.org/10.1103/PhysRevB.11.5145

©1975 American Physical Society

Authors & Affiliations

Riccardo Tubino*

  • Department of Physics, New York University, New York, New York 10003

Luigi Piseri

  • Istituto di Chimica delle Macromolecole del CNR, Via A. Corti 12, 20133 Milano, Italy

  • *Present address: City College of the City University of New York, Physics Dept., New York, N.Y. 10031; Permanent address: Istituto di Chimica delle Macromolecole del CNR, Via A. Corti 12, 20133 Milano, Italy.

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Issue

Vol. 11, Iss. 12 — 15 June 1975

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