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Strongly coupled Josephson-junction array for simulation of frustrated one-dimensional spin models

机译:强耦合约瑟夫森结阵列,用于模拟沮丧的一维自旋模型

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摘要

We study the capacitance-coupled Josephson-junction array beyond the small-coupling limit. We find that, when the scale of the system is large, its Hamiltonian can be obtained without the small-coupling approximation and the system can be used to simulate strongly frustrated one-dimensional Ising spin problems. To engineer the system Hamiltonian for an ideal theoretical model, we apply a dynamical-decoupling technique to eliminate undesirable couplings in the system. Using a six-site junction array as an example, we numerically evaluate the system to show that it exhibits important characteristics of the frustrated spin model.
机译:我们研究了超出小耦合极限的电容耦合约瑟夫逊结阵列。我们发现,当系统规模较大时,无需小耦合近似即可获得其哈密顿量,并且该系统可用于模拟严重受挫的一维Ising自旋问题。为了设计理想的理论模型的系统哈密顿量,我们应用了动态解耦技术来消除系统中的不良耦合。以一个六点结阵列为例,我们对该系统进行了数值评估,以显示该系统具有受挫自旋模型的重要特征。

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