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Low-field magnetic response of multi-junction superconducting quantum interference devices

机译:多结超导量子干涉装置的低场磁响应

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摘要

The magnetic states of multi-junction superconducting quantum interference device containing 2N identical conventional Josephson junctions are studied by means of a perturbation analysis of the non-linear first-order ordinary differential equations governing the dynamics of the Josephson junctions in these devices. In the zero-voltage state, persistent currents are calculated in terms of the externally applied magnetic flux Phi(ex) . The resulting d.c. susceptibility curves show that paramagnetic and diamagnetic states are present, depending on the value of Phi(ex) . The stability of these states is qualitatively studied by means of the effective potential notion for the system.
机译:通过对控制这些装置中约瑟夫森结的动力学的非线性一阶常微分方程进行扰动分析,研究了包含2N个相同常规约瑟夫森结的多结超导量子干涉装置的磁态。在零电压状态下,根据外部施加的磁通Phi(ex)计算持久电流。产生的直流电磁化率曲线表明存在顺磁性和反磁性状态,具体取决于Phi(ex)的值。通过系统的有效电位概念定性地研究了这些状态的稳定性。

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