伊辛自旋-1/2 XXZ 链的量子问题超越了自旋子范式。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-01 DOI:10.1063/5.0204689
J M P Carmelo, P D Sacramento
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引用次数: 0

摘要

自旋链是一种相关量子模型,在表现出准一维磁性的量子系统和材料中引起了极大的兴趣。在此,我们回顾了与自旋链相关的量子问题的研究成果,这些成果超越了通常的自旋子范式。另外,我们还使用了一种在热力学极限下有效的表示法,即 N→∞,它是以自旋-1/2XXZ 链在其整个希尔伯特空间中的 N 个自旋-1/2 物理自旋来表示的。它最初是在大卫合著的卡梅洛等人 [Phys. Rev. B 92, 165133 (2015)]中针对各向同性点提出的,最近在卡梅洛等人 [Phys. Rev. Res. 5, 043058 (2023)] 和 J. M. P. 卡梅洛和 P. D. 萨克拉门托 [Nucl.B 974, 115610 (2022); Nucl.B 997, 116385 (2023) (Corrigendum)] 。物理自旋表示说明了自旋-1/2XXZ 链的连续 SUq(2) 对称性,参数为 q=Δ+Δ2-1∈]1,∞],并与 q 自旋 Sq 有关。具体地说,在这篇综述中,我们考虑了两个超越自旋子表征的量子问题:(a) 长度为 n 的自旋贝特弦没有自旋子表征,但有助于具有各向异性 Δ>1 的自旋-1/2XXZ 链的动力学特性,并且在实验中确定了 n=1,2,3,并在人字形材料 SrCo2V2O8 和 BaCo2V2O8 中实现了这一特性;(b) 在任意有限温度下与弹道自旋输运相关的自旋刚度,这涉及大量的能量特征 态,其中许多是在热力学极限下通过无限多的基本过程从基态产生的。正如 Carmelo 等人 [Phys. Rev. Res. 5, 043058 (2023)] 和 J. M. P. Carmelo 和 P. D. Sacramento [Nucl.B 974, 115610 (2022); Nucl.Phys. B 997, 116385 (2023) (Corrigendum)], 使用连续的 SUq(2) 对称性揭示了在各向异性 Δ>1 的情况下,长度为 n=1,2,3,...的贝特弦描述了若干 n 的物理自旋 Sq=0 单子对,在 n>1 的情况下,它们被束缚在一个 Sq=0 单子构型内。它们对纵向磁场中的自旋-1/2XXZ 链和 SrCo2V2O8 中的自旋链的自旋动力学结构因子的贡献是本文讨论的问题之一。此外,SUq(2) 对称性要求 N 个物理自旋中只有 2Sq 是自旋载流子。我们还回顾了 J. M. P. Carmelo 和 P. D. Sacramento 的最新研究成果["Diffusive spin transport of the spin-1/2 XXZ chain in the Ising regime at zero magnetic field and finite temperature," (submitted) (2024)],涉及零磁场下有限温度弹道自旋输运贡献的消失。在物理自旋表征中,这仅仅是因为所有有限自旋态的 M=2Sq 自旋载流子所携带的基本自旋电流的绝对值是有限的。最后,我们讨论了人字形材料 BaCo2V2O8 和 SrCo2V2O8 由于选择性链间耦合而偏离自旋-1/2XXZ 链的一维物理描述。
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Ising spin-1/2 XXZ chain's quantum problems beyond the spinon paradigm.

Spin chains are correlated quantum models of great interest in quantum systems and materials exhibiting quasi-one-dimensional magnetic properties. Here, we review results on quantum problems associated with spin chains that are beyond the usual spinon paradigm. Alternatively, we use a representation valid in the thermodynamic limit, N→∞, in terms of the N spin-1/2 physical spins of the spin-1/2XXZ chain in its whole Hilbert space. It was originally introduced for the isotropic point in Carmelo et al. [Phys. Rev. B 92, 165133 (2015)], co-authored by David, and more recently extended to spin anisotropies Δ>1 in Carmelo et al. [Phys. Rev. Res. 5, 043058 (2023)] and J. M. P. Carmelo and P. D. Sacramento [Nucl. Phys. B 974, 115610 (2022); Nucl. Phys. B 997, 116385 (2023) (Corrigendum)]. The physical-spins representation accounts for the spin-1/2XXZ chain's continuous SUq(2) symmetry parameterized by q=Δ+Δ2-1∈]1,∞] and associated with q-spin Sq. Specifically, in this review we consider two quantum problems that are beyond the spinon representation: (a) Spin Bethe strings of length n that have no spinon representation, contribute to the dynamical properties of the spin-1/2XXZ chain with anisotropy Δ>1 and for n=1,2,3 were experimentally identified and realized in the zigzag materials SrCo2V2O8 and BaCo2V2O8; (b) The spin stiffness associated with ballistic spin transport at arbitrary finite temperature, which involves a huge number of energy eigenstates, many of which are generated in the thermodynamic limit from ground states by an infinite number of elementary processes. As found in Carmelo et al. [Phys. Rev. Res. 5, 043058 (2023)] and J. M. P. Carmelo and P. D. Sacramento [Nucl. Phys. B 974, 115610 (2022); Nucl. Phys. B 997, 116385 (2023) (Corrigendum)], the use of the continuous SUq(2) symmetry reveals that for anisotropy Δ>1 the Bethe strings of length n=1,2,3,… describe a number n of physical-spins Sq=0 singlet pairs that for n>1 are bound within a Sq=0 singlet configuration. Their contribution to the spin dynamical structure factor of both the spin-1/2XXZ chain in a longitudinal magnetic field and the spin chains in SrCo2V2O8 is one of the issues addressed in this paper. In addition, the SUq(2) symmetry imposes that only 2Sq out of the N physical spins are the spin carriers. We also review recent results of J. M. P. Carmelo and P. D. Sacramento ["Diffusive spin transport of the spin-1/2 XXZ chain in the Ising regime at zero magnetic field and finite temperature," (submitted) (2024)] concerning the vanishing of the contributions to finite-temperature ballistic spin transport at zero magnetic field. Within the physical-spins representation, this merely follows from the absolute value of the elementary spin currents carried by the M=2Sq spin carriers of all finite-Sq states that contribute to the spin stiffness being finite. Finally, we discuss deviations of the zigzag materials BaCo2V2O8 and SrCo2V2O8 from the one-dimensional physics described the spin-1/2XXZ chain due to selective interchain couplings.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
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9.40
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2.10%
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464
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