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Quantum phase transitions in low-dimensional quantum spin systems with incommensurate magnetic structures

机译:具有不相称磁性结构的低维量子自旋系统中的量子相变

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Several exactly solvable quantum spin models with incommensurate magnetic structures, which manifest quantum phase transitions between incommensurate and commensurate phases, are proposed. The ground-state and thermodynamic characteristics of these quantum spin antiferromagnetic models with the Dzyaloshinsky-Moriya antisymmetric exchange interaction and spin-frustrating next-nearest-neighbor, three-spin, and four-spin (ring exchange) interactions are exactly studied. We investigated the ground state phases of the considered models, as function of the magnetic anisotropy, Dzyaloshinsky-Moriya interaction, next-nearest-neighbor coupling constants, and external magnetic field. Several quantum phase transitions between magnetically incommensurate phases and between incommensurate and ferromagnetic phases are predicted, and the behavior of thermodynamic characteristics of those models at phase transitions is studied. We have shown that for models with chiral three-spin interactions the Dzyaloshinsky-Moriya coupling yields the onset of the weak ferromagnetism, similar to three-dimensional ordered antiferromagnets, but not present in other quantum spin chains with the antisymmetric exchange. Considered models appeared to be important for several quasi-one-dimensional spin systems, studied in recent experiments.
机译:提出了几种具有不相称磁性结构的可精确求解的量子自旋模型,这些模型显示了不相称和相称相之间的量子相变。精确研究了这些具有Dzyaloshinsky-Moriya反对称交换相互作用和使自旋受阻的近邻,三自旋和四自旋(环交换)相互作用的量子自旋反铁磁模型的基态和热力学特性。我们研究了所考虑模型的基态相位,作为磁各向异性,Dzyaloshinsky-Moriya相互作用,下一个近邻耦合常数和外部磁场的函数。预测了磁不等相之间以及不等相和铁磁相之间的几个量子相变,并研究了这些模型在相变时的热力学特性。我们已经表明,对于具有手性三自旋相互作用的模型,Dzyaloshinsky-Moriya耦合产生弱的铁磁性,类似于三维有序反铁磁性,但在其他具有对称性交换的量子自旋链中不存在。在最近的实验研究中,考虑到的模型对于几种准一维自旋系统似乎很重要。

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