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In-phase motion of Josephson vortices in stacked SNS Josephson junctions: effect of ordered pinning

机译:堆叠SNS Josephson结中Josephson涡的同相运动:有序钉扎的影响

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The dynamics of Josephson vortices (fluxons) in artificial stacks of superconducting- normal-superconducting Josephson junctions is investigated using the anisotropic time-dependent Ginzburg-Landau theory in the presence of a square/rectangular array of pinning centers (holes). For small values of the applied drive, fluxons in different junctions move out of phase, forming a periodic triangular lattice. A rectangular lattice of moving fluxons is observed at larger currents, which is in agreement with previous theoretical predictions (Koshelev and Aranson 2000 Phys. Rev. Lett. 85 3938). This 'superradiant' flux-flow state is found to be stable in a wide region of applied current. The stability range of this ordered state is considerably larger than the one obtained for the pinning-free sample. Clear commensurability features are observed in the current-voltage characteristics of the system with pronounced peaks in the critical current at (fractional) matching fields. The effect of density and strength of the pinning centers on the stability of the rectangular fluxon lattice is discussed. Predicted synchronized motion of fluxons in the presence of ordered pinning can be detected experimentally using the rf response of the system, where enhancement of the Shapiro-like steps is expected due to the synchronization.
机译:在存在钉扎中心(孔)的正方形/矩形阵列的情况下,使用各向异性的时变Ginzburg-Landau理论,研究了超导-常态-超导Josephson结的人工堆叠中的Josephson涡旋(长子)的动力学。对于所施加驱动的较小值,不同结点处的通量会异相移动,从而形成一个周期性的三角形晶格。在较大的电流下观察到移动通量的矩形晶格,这与先前的理论预测相一致(Koshelev和Aranson 2000 Phys。Rev. Lett。85 3938)。发现这种“超辐射”通量流动状态在所施加电流的宽范围内是稳定的。该有序状态的稳定性范围比无钉扎样品的稳定性范围大得多。在系统的电流-电压特性中观察到明显的可共性特征,临界电流在(分数)匹配场上具有明显的峰值。讨论了钉扎中心的密度和强度对矩形磁通晶格稳定性的影响。使用系统的射频响应,可以通过实验检测存在有序钉扎的情况下磁通的预测同步运动,其中由于同步,有望增强类似于Shapiro的步骤。

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