paper

Lattice effects in the quasi-two-dimensional valence-bond-solid Mott insulator EtMeP[Pd(dmit)]

arXiv:1309.1100 · doi:10.1103/PhysRevB.89.045113

Abstract

The organic charge-transfer salt EtMeP[Pd(dmit)] is a quasi-two-dimensional Mott insulator with localized spins = 1/2 residing on a distorted triangular lattice. Here we report measurements of the uniaxial thermal expansion coefficients along the in-plane = - and -axis as well as along the out-of-plane -axis for temperatures 1.4\,K T 200\,K. Particular attention is paid to the lattice effects around the phase transition at = 25\,K into a low-temperature valence-bond-solid phase and the paramagnetic regime above where effects of short-range antiferromagnetic correlations can be expected. The salient results of our study include (i) the observation of strongly anisotropic lattice distortions accompanying the formation of the valence-bond-solid, and (ii) a distinct maximum in the thermal expansion coefficients in the paramagnetic regime around 40\,K. Our results demonstrate that upon cooling through the in-plane -axis, along which the valence bonds form, contracts while the second in-plane -axis elongates by the same relative amount. Surprisingly, the dominant effect is observed for the out-of-plane -axis which shrinks significantly upon cooling through . The pronounced anomaly in around 40\,K is attributed to short-range magnetic correlations. It is argued that the position of this maximum, relative to that in the magnetic susceptibility around 70\,K, speaks in favor of a more anisotropic triangular-lattice scenario for this compound than previously thought.

6 pages, 4 figures, submitted to Phys. Rev. B

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