Investigation of the Spin-Peierls transition in CuGeO3 by Raman scattering
P. Lemmens, B. Eisener, M. Brinkmann, L. V. Gasparov, G. Güntherodt, P. v. Dongen, W. Richter, M. Weiden, C. Geibel, F. Steglich
Abstract
Raman experiments on the spin-Peierls compound CuGeO3 and the substituted (Cu1- x,Znx)GeO3 and Cu(Ge1-x,Gax)O3 compounds were performed in order to investigate the response of specific magnetic excitations of the one-dimensional spin-1/2 chain to spin anisotropies and substitution-induced disorder. In pure CuGeO3, in addition to normal phonon scattering which is not affected at all by the spin-Peierls transition, four types of magnetic scattering features were observed. Below TSP=14 K a singlet-triplet excitation at 30 cm-1, two-magnon scattering from 30 to 227 cm-1 and folded phonon modes at 369 and 819 cm-1 were identified. They were assigned by their temperature dependence and lineshape. For temperatures between the spin-Peierls transition TSP and approximately 100 K a broad intensity maximum centered at 300 cm-1 is observed.
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