Department of Physics, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Department of Chemistry, Department of Physics and Astronomy, and the Institute for Quantum Matter, The Johns Hopkins University, Baltimore, MD, 21218, USA.
Nat Commun. 2018 Oct 22;9(1):4367. doi: 10.1038/s41467-018-06800-2.
Recently measurements on various spin-1/2 quantum magnets such as HLiIrO, LiZnMoO, ZnCu(OH)Cl and 1T-TaS-all described by magnetic frustration and quenched disorder but with no other common relation-nevertheless showed apparently universal scaling features at low temperature. In particular the heat capacity C[H, T] in temperature T and magnetic field H exhibits T/H data collapse reminiscent of scaling near a critical point. Here we propose a theory for this scaling collapse based on an emergent random-singlet regime extended to include spin-orbit coupling and antisymmetric Dzyaloshinskii-Moriya (DM) interactions. We derive the scaling C[H, T]/T ~ HF[T/H] with F[x] = x at small x, with q ∈ {0, 1, 2} an integer exponent whose value depends on spatial symmetries. The agreement with experiments indicates that a fraction of spins form random valence bonds and that these are surrounded by a quantum paramagnetic phase. We also discuss distinct scaling for magnetization with a q-dependent subdominant term enforced by Maxwell's relations.
最近对各种自旋-1/2 量子磁体的测量,如 HLiIrO、LiZnMoO、ZnCu(OH)Cl 和 1T-TaS,这些磁体都受到磁阻挫和淬火无序的影响,但没有其他共同的关系——尽管如此,在低温下仍表现出明显的普遍标度特征。特别是热容 C[H, T]在温度 T 和磁场 H 下表现出 T/H 数据的崩溃,类似于临界点附近的标度。在这里,我们提出了一种基于扩展到包括自旋轨道耦合和反对称 Dzyaloshinskii-Moriya (DM) 相互作用的突发单态区的新兴理论,来解释这种标度崩溃。我们推导出标度 C[H, T]/T ≈ HF[T/H],其中 F[x] = x 在小 x 时,q ∈ {0, 1, 2}是一个整数指数,其值取决于空间对称性。与实验的一致性表明,一部分自旋形成了随机价键,而这些价键被一个量子顺磁相所包围。我们还讨论了磁化率的不同标度,这是由麦克斯韦关系强制的 q 相关次主导项。