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Quantum Ising model in a period-2 modulated transverse field

机译:时期-2调制横向场中的量子ising模型

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We study a finite spin- 1 2 Ising chain with a spatially alternating transverse field of period 2. By means of a Jordan-Wigner transformation for even and odd sites, we are able to map it into a one-dimensional model of free fermions.We determine the ground-state energies in the positive- and negative-parity subspaces (subspaces with an even or odd total number of down spins, respectively) and compare them in order to establish the ground-state energy for the entire Hamiltonian. We derive closed-form expressions for this energy gap between the different parity subspaces and analyze its behavior and dependence on the system size in the various regimes of the applied field. Finally, we suggest an expression for the correlation length of such a model that is consistent with the various values found in the literature for its behavior in the vicinity of critical points.
机译:我们研究了一个有限的旋转 - 1 2刻度链,具有空间交替的时期2。通过偶数和奇数站点的Jordan-Wigner转换,我们能够将其映射到自由蜕皮的一维模型中。 我们确定正面和负奇偶校验子空间中的地 - 状态能量(分别分别具有均匀或奇数或奇数的子空间)并比较它们,以便为整个Hamiltonian建立地面能量。 我们在不同奇偶校验子空间之间的这种能量差距中获得了闭合表达式,并分析了其行为和对应用领域各种规范中的系统尺寸的行为和依赖性。 最后,我们建议对这种模型的相关长度的表达式,该模型与文献中发现的各种值一致,其在关键点附近的行为。

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