论文标题

检测量子Heisenberg Spin- $ 1/2 $链的Kardar-Parisi-Zhang水动力学

Detection of Kardar-Parisi-Zhang hydrodynamics in a quantum Heisenberg spin-$1/2$ chain

论文作者

Scheie, A., Sherman, N. E., Dupont, M., Nagler, S. E., Stone, M. B., Granroth, G. E., Moore, J. E., Tennant, D. A.

论文摘要

一旦建立了局部平衡,经典的流体动力学是许多粒子系统的粗粒度行为的一种广泛的描述。流体动力方程的形式主要取决于系统中存在的保守量。即使在最简单的情况下,一些量子自旋链也具有大大扩展的保护定律,最近的工作表明,即使在高温下,这些定律也会强烈修改集体旋转动力学。在这里,通过探测一维海森贝格抗铁磁铁kcuf $ _3 $的动态指数,并具有中子散射,我们发现了证据表明,动态指数$ z = 3/2 $很好地描述了旋转动力学,这与最近的理论构想相一致,这与kardar-paris-paris-paris-paris-paris-pareshang cankity callatiencation the量子的动力学相一致。该观察结果表明,在中等温度下,低能无弹性中子散射可以揭示出较高尺寸的非弗米液体中出现的量子流体特性的细节。

Classical hydrodynamics is a remarkably versatile description of the coarse-grained behavior of many-particle systems once local equilibrium has been established. The form of the hydrodynamical equations is determined primarily by the conserved quantities present in a system. Some quantum spin chains are known to possess, even in the simplest cases, a greatly expanded set of conservation laws, and recent work suggests that these laws strongly modify collective spin dynamics even at high temperature. Here, by probing the dynamical exponent of the one-dimensional Heisenberg antiferromagnet KCuF$_3$ with neutron scattering, we find evidence that the spin dynamics are well described by the dynamical exponent $z=3/2$, which is consistent with the recent theoretical conjecture that the dynamics of this quantum system are described by the Kardar-Parisi-Zhang universality class. This observation shows that low-energy inelastic neutron scattering at moderate temperatures can reveal the details of emergent quantum fluid properties like those arising in non-Fermi liquids in higher dimensions.

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