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Lifetime of Gapped Excitations in a Collinear Quantum Antiferromagnet

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arxiv 1206.4690 v2 pith:42DVPYZ4 submitted 2012-06-20 cond-mat.str-el

Lifetime of Gapped Excitations in a Collinear Quantum Antiferromagnet

classification cond-mat.str-el
keywords gappedantiferromagnetgammaantiferromagnetscollinearexcitationslifetimemagnons
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We demonstrate that local modulations of magnetic couplings have a profound effect on the temperature dependence of the relaxation rate of optical magnons in a wide class of antiferromagnets in which gapped excitations coexist with acoustic spin waves. In a two-dimensional collinear antiferromagnet with an easy-plane anisotropy, the disorder-induced relaxation rate of the gapped mode, Gamma_imp=Gamma_0+A(TlnT)^2, greatly exceeds the magnon-magnon damping, Gamma_m-m=BT^5, negligible at low temperatures. We measure the lifetime of gapped magnons in a prototype XY antiferromagnet BaNi2(PO4)2 using a high-resolution neutron-resonance spin-echo technique and find experimental data in close accord with the theoretical prediction. Similarly strong effects of disorder in the three-dimensional case and in noncollinear antiferromagnets are discussed.

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