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The nature of spin excitations in the one-third magnetization plateau phase of Ba3CoSb2O9

机译:Ba3CoSb2O9的三分之一磁化高原相中自旋激发的性质

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摘要

Magnetization plateaus in quantum magnets—where bosonic quasiparticles crystallize into emergent spin superlattices—are spectacular yet simple examples of collective quantum phenomena escaping classical description. While magnetization plateaus have been observed in a number of spin-1/2 antiferromagnets, the description of their magnetic excitations remains an open theoretical and experimental challenge. Here, we investigate the dynamical properties of the triangular-lattice spin-1/2 antiferromagnet Ba3CoSb2O9 in its one-third magnetization plateau phase using a combination of nonlinear spin-wave theory and neutron scattering measurements. The agreement between our theoretical treatment and the experimental data demonstrates that magnons behave semiclassically in the plateau in spite of the purely quantum origin of the underlying magnetic structure. This allows for a quantitative determination of Ba3CoSb2O9 exchange parameters. We discuss the implication of our results to the deviations from semiclassical behavior observed in zero-field spin dynamics of the same material and conclude they must have an intrinsic origin.
机译:量子磁体中的磁化高原(玻色子准分子在其中结晶成新兴的自旋超晶格)是集体量子现象的经典而又壮观的简单示例。尽管在许多自旋1/2反铁磁体中观察到磁化平稳期,但对其磁激发的描述仍然是一个开放的理论和实验挑战。在这里,我们结合非线性自旋波理论和中子散射测量,研究了三角形晶格自旋1/2反铁磁体Ba3CoSb2O9在其三分之一磁化稳定期的动力学性质。我们的理论处理与实验数据之间的一致性表明,尽管潜在的磁性结构的纯粹量子起源,但磁振子在高原中的行为仍是半经典的。这可以定量确定Ba3CoSb2O9交换参数。我们讨论了我们的结果对在相同材料的零场自旋动力学中观察到的与半经典行为偏差的影响,并得出结论,它们必须具有内在起源。

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