首页> 外文期刊>Physical Review, B. Condensed Matter >Complex dynamical flow phases and pinning in superconductors with rectangular pinning arrays - art. no. 014501
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Complex dynamical flow phases and pinning in superconductors with rectangular pinning arrays - art. no. 014501

机译:具有矩形钉扎阵列的超导体中复杂的动态流动阶段和钉扎-艺术。没有。 014501

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We examine vortex pinning and dynamics in thin-film superconductors containing logarithmically interacting Pearl vortices moving through square and rectangular pinning arrays for varied vortex densities including densities significantly larger than the pinning density. For both square and rectangular pinning arrays, the critical depinning force shows maxima only at certain integer matching fields where the vortices can form highly ordered lattices. For rectangular arrays the depinning force and commensurability effects rue anisotropic, with a much lower depinning threshold for vortex motion in the easy-flow directions. We find evidence for a crossover in pinning behavior in rectangular pinning arrays as the field is increased. We also show analytically, and confirm with simulations, that for B = 2B(phi) the strongest pinning for one direction of the driving force can be achieved for rectangular pinning arrangements rather than square ones. Under an applied driving force we find a remarkable variety of distinct complex flow phase: in both square and rectangular arrays. These flow phases include stable sinusoidal and intricate pinched patterns where vortices from different channels do not mix. As a function of the driving force certain flow states become unstable and transitions between different phases are observed that coincide with changes in the net vortex velocities. In the rectangular arrays the types of flow observed depend on the direction of drive. We also show that two general types of plastic flow occur: stable flows, where vortices always flow along the same paths, and unstable or chaotic flows. [References: 74]
机译:我们检查了薄膜超导体中的涡旋钉扎和动力学,该薄膜超导体包含通过正方形和矩形钉扎阵列移动的对数相互作用的珍珠涡流,从而发现各种涡旋密度,包括密度明显大于钉扎密度。对于正方形和矩形钉扎阵列,临界钉扎力仅在某些整数匹配场处显示最大值,在该处,涡旋可以形成高度有序的晶格。对于矩形阵列,钉扎力和可衡量性影响是各向异性的,涡流沿易流方向的钉扎阈值要低得多。我们发现随着磁场增加,矩形钉扎阵列中钉扎行为发生交叉的证据。我们还进行了分析显示,并通过仿真确认,对于B = 2B(phi),对于矩形钉扎布置而不是方形钉扎布置,可以实现对驱动力的一个方向的最强钉扎。在施加的驱动力下,我们发现了各种不同的复杂流动相:正方形和矩形阵列。这些流动阶段包括稳定的正弦曲线和复杂的挤压模式,其中来自不同通道的涡流不会混合。作为驱动力的函数,某些流动状态变得不稳定,并且观察到与净涡旋速度变化一致的不同相之间的过渡。在矩形阵列中,观察到的流动类型取决于驱动方向。我们还表明,发生两种一般类型的塑性流动:稳定的流动(涡流始终沿相同的路径流动)和不稳定的或混乱的流动。 [参考:74]

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