Lattice Dynamics In The Spin-1/2 Frustrated Kagome Compound Herbertsmithite

PHYSICAL REVIEW B(2020)

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摘要
We investigate the lattice dynamics in the spin-1/2 frustrated kagome compound herbertsmithite ZnCu3(OH)(6)Cl-2 by a combination of infrared spectroscopy measurements and ab initio density functional theory calculations, and provide an unambiguous assignment of infrared-active lattice vibrations involving in-plane and out-of-plane atom displacements in the kagome layers. Upon cooling, nonthermal redshifts and broadening appear specifically for modes that deform the kagome layer or affect the Cu-O-Cu bond angles, thus creating pronounced modifications of the antiferromagnetic exchange coupling. Our results indicate the presence of a strong magnetoelastic coupling to the spin system. We discuss the effects of this coupling and its relation to recent experiments reporting a global symmetry reduction of the kagome lattice symmetry.
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