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Muon spin relaxation and rotation study on the solid solution of the two spin-gap systems (CH3)2CHNH3-CuCl3 and (CH3)2CHNH3-CuBr3

T. Saito, A. Oosawa, T. Goto, T. Suzuki, I. Watanabe

cond-mat.str-elarXiv:cond-mat/0604466

Abstract

Muon-spin-rotation and relaxation studies have been performed on (CH3)2CHNH3Cu(ClxBr1-x)3 with x=0.85 and 0.95, which are solid solutions of the two isomorphic spin-gap systems (CH3)2CHNH3CuCl3 and (CH3)2CHNH3CuBr3 with different spin gaps. The sample with x=0.85 showed a clear muon spin rotation under zero-field below T N=11.65K, indicating the existence of a long-range antiferromagnetic order. A critical exponent of the hyperfine field was obtained to be β=0.33, which agrees with 3D-Ising model. In the other sample with x=0.95, an anomalous enhancement of the muon spin relaxation was observed at very low temperatures indicating a critical slowing down due to a magnetic instability of the ground state.

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