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The spin-1/2 and spin-1 quantum J1-J1'-J2 Heisenberg models on the square lattice

机译:spin-1/2和spin-1量子 J 1 - J 1 ' - J 2 方格上的海森堡模型

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摘要

We study the J1-J1'-J2 quantum spin model on the two-dimensional square lattice using the coupled cluster method. We compare and contrast the influence of the interchain coupling J1' on the zero-temperature phase diagrams for the two spin values s = 1/2 and s = 1. Our most important result for the s = 1/2 case is the predicted existence of a quantum triple point (QTP) at (J1' ≈ 0.60 ± 0.03, J2 ≈ 0.33 ± 0.02) when J1 = 1. Below the QTP (J1'/J1 ≤ 0.60) we predict a second-order phase transition between the quasi-classical Neel and stripe-ordered phases, whereas the corresponding classical model, which contains only these two phases for all spin values s, yields a first-ordertransition. Above the QTP (J1'/J1 ≥ 0.60) an intermediate disordered phase emerges, which has no classical counterpart. By contrast, the situation for s = 1 is qualitatively different. Instead of a QTP where three phases co-exist, we now predict a quantum tricritical point at (J1' ≈ 0.66 ± 0.03, J2 ≈ 0.35 ± 0.02) when J1 = 1, where a line of second-order phase transitions between the quasi classical Neel and stripe-ordered phases (for J1'/J1 ≤ 0.66) meets a line of first-order phase transitions between the same two states (for J1'/J1 ≥ 0.66). Surprisingly, we find no evidence at all for any intermediate disordered phase in the s = 1 case.
机译:我们使用耦合簇方法研究了二维方格上的J1-J1'-J2量子自旋模型。我们比较并对比了两个自旋值s = 1/2和s = 1时链间耦合J1'对零温度相图的影响。对于s = 1/2情况,最重要的结果是预测的存在J1 = 1时(J1'≈0.60±0.03,J2≈0.33±0.02)处的量子三点(QTP)的分布,我们预测在QTP以下(J1'/ J1≤0.60),准量子点之间的二阶相变Neel和条带序的经典相位,而仅包含所有自旋值s的这两个相位的相应经典模型产生一阶跃迁。在QTP之上(J1'/ J1≥0.60)出现了一个中间无序相,没有经典对应物。相反,s = 1的情况在质量上有所不同。现在,我们预测的不是量子态的三相共存的QTP,而是当J1 = 1时,在(J1'≈0.66±0.03,J2≈0.35±0.02)处有一个量子三临界点,其中一条二阶相线在准量子点之间跃迁。经典的Neel和条纹有序相(对于J1'/ J1≤0.66)在相同的两个状态(对于J1'/ J1≥0.66)之间遇到一阶相变线。令人惊讶的是,在s = 1病例中,我们没有发现任何中间无序期的证据。

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