Quantum versus thermal fluctuations in the fcc antiferromagnet: Alternative routes to order by disorder

R. Schick, T. Ziman, M. Zhitomirsky
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引用次数: 8

Abstract

In frustrated magnetic systems with competing interactions fluctuations can lift the residual accidental degeneracy. We argue that the state selection may have different outcomes for quantum and thermal order by disorder. As an example, we consider the semiclassical Heisenberg fcc antiferromagnet with only the nearest-neighbor interactions. Zero-point oscillations select the type 3 collinear antiferromagnetic state at T=0. Thermal fluctuations favor instead the type 1 antiferromagnetic structure. The opposite tendencies result in a finite-temperature transition between the two collinear states. Competition between effects of quantum and thermal order by disorder is a general phenomenon and is also realized in the J1-J2 square-lattice antiferromagnet at the critical point J2 = 0.5 J1.
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fcc反铁磁体中的量子与热涨落:由无序到有序的替代途径
在具有竞争相互作用的受挫磁系统中,涨落可以解除剩余偶然简并。我们认为状态选择在量子有序和热无序中可能有不同的结果。作为一个例子,我们考虑只有最近邻相互作用的半经典海森堡fcc反铁磁体。零点振荡选择T=0时的3型共线反铁磁态。相反,热波动有利于1型反铁磁结构。相反的趋势导致两个共线态之间的有限温度转变。量子有序效应和热有序效应之间的无序竞争是一种普遍现象,在临界点J2 = 0.5 J1的J1-J2方晶格反铁磁体中也有这种现象。
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