Abstract
Giant anomalies are found in the temperature dependence of Raman-active phonons in the quantum magnet TiOCl, suggesting the presence of an extended fluctuation regime. This regime coincides with a pseudogap phase identified in earlier NMR experiments. The observed large, local spin-gap is proposed to origin from coupled spin/lattice fluctuations. Below 100 K, in the long-range crystallographically distorted phase, a dimerized ground state with a smaller, global spin-gap of about 2Δspin ≈ 430 Êexists. This transition also marks a dimensionality cross-over of the system.
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CITATION STYLE
Lemmens, P., Choi, K. Y., Caimi, G., Degiorgi, L., Kovaleva, N. N., Seidel, A., & Chou, F. C. (2004). Giant phonon softening in the pseudogap phase of the quantum spin system TiOCl. Physical Review B - Condensed Matter and Materials Physics, 70(13). https://doi.org/10.1103/PhysRevB.70.134429
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