论文标题

Spin-1/2 Heisenberg-Kitaev kagome磁铁中的量子古典交叉

Quantum-classical crossover in the spin-1/2 Heisenberg-Kitaev kagome magnet

论文作者

Yang, Yang, Perkins, Natalia B., Koç, Fulya, Lin, Chi-Huei, Rousochatzakis, Ioannis

论文摘要

Spin-1/2 Heisenberg kagome Antyromagnet是令人沮丧的量子磁性的范式游乐场之一,具有大量竞争的共鸣价键(RVB)状态,在低能量下出现,包括Gapped Gapped和无缝合型旋转液体和Valence键和Valence Bond Crystals。在这里,我们将这种量子RVB阶段的交叉重新审视到由各向异性Kitaev相互作用带来的半经典制度,并专注于该交叉的确切机制。为此,我们根据出现的类似于ISing的变量对经典基础状态(GSS)的简单参数化,并使用此参数来构建有效的低能描述,对在阶段图的大部分图中运行的订单机制进行操作的逐阶机制,并从阶段图的大部分中,以及从二限制的限制,从而完全限制,从而获得完整的数据,从而获得完整的数据。古典GSS的基础。结果表明,在限制基础之外的状态的波动校正在半经典状态内强烈淬灭(由于较大的各向异性旋转间隙),并且RVB相可在北塔维尔各向异性$ k $中幸存下来。我们进一步发现,纯粹的基塔伊夫模型接受了一维对称性的典型数量,这自然地解释了先前报道的无序的经典和量子秩序。

The spin-1/2 Heisenberg kagome antiferromagnet is one of the paradigmatic playgrounds for frustrated quantum magnetism, with an extensive number of competing resonating valence bond (RVB) states emerging at low energies, including gapped and gapless spin liquids and valence bond crystals. Here we revisit the crossover from this quantum RVB phase to a semiclassical regime brought about by anisotropic Kitaev interactions, and focus on the precise mechanisms underpinning this crossover. To this end, we introduce a simple parametrization of the classical ground states (GSs) in terms of emergent Ising-like variables, and use this parametrizaton: i) to construct an effective low-energy description of the order-by-disorder mechanism operating in a large part of the phase diagram, and ii) to contrast, side by side, exact diagonalization data obtained from the full basis with that obtained from the restricted (orthonormalized) basis of classical GSs. The results reveal that fluctuation corrections from states outside the restricted basis are strongly quenched inside the semiclassical regime (due to the large anisotropy spin gaps), and that the RVB phase survives up to a relatively large value of Kitaev anisotropy $K$. We further find that the pure Kitaev model admits a subextensive number of one-dimensional symmetries, which explains naturally the absence of classical and quantum order by disorder reported previously.

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