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Dynamic ordering and frustration of confined vortex rows studied by mode-locking experiments

机译:锁模实验研究有限涡流行的动态有序化和无奈化

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The flow properties of confined vortex matter driven through disordered mesoscopic channels are investigated by mode locking (ML) experiments. The observed ML effects allow us to trace the evolution of both the structure and the number of confined rows and their match to the channel width as function of magnetic field. Prom a detailed analysis of the ML behavior for the case of three rows we obtain (ⅰ) the pinning frequency f_p , (ⅱ) the onset frequency f_c for ML (∝ordering velocity), and (?) the fraction L_(ML)/L of coherently moving three-row regions in the channel. The field dependence of these quantities shows that, at matching, where L_(ML) is maximum, the pinning strength is small and the ordering velocity is low, while at mismatch, where L_(ML) is small, both the pinning force and the ordering velocity are enhanced. Further, we find that f_c∝f_p~2, consistent with the dynamic ordering theory of Koshelev and Vinokur. The microscopic nature of the flow and the ordering phenomena will also be discussed.
机译:通过锁模实验研究了通过无序介观通道驱动的有限涡流的流动特性。观察到的ML效应使我们能够追踪结构和受限行数的演变以及它们与通道宽度的匹配(随磁场变化)。对三行情况下的ML行为进行详细分析,我们获得(ⅰ)钉扎频率f_p,(ⅱ)ML的起始频率f_c(∝排序速度),和(?)分数L_(ML) / L通道中相干移动的三行区域。这些量的场依赖性表明,在匹配时,L_(ML)最大,则钉扎强度小,订购速度低;而在不匹配时,L_(ML)小,钉扎力和销钉强度订购速度提高。此外,我们发现f_c∝f_p〜2与Koshelev和Vinokur的动态有序理论一致。流动的微观性质和有序现象也将讨论。

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