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Vortex ratchet effects in films with a periodic array of antidots

机译:具有解毒剂周期性阵列的薄膜中的涡旋棘轮效应

摘要

The vortex ratchet effect has been studied in Al films patterned with square arrays of submicron antidots. We have investigated the transport properties of two sets of samples: (i) asymmetrical antidots where vortices are driven by an unbiased ac current and (ii) symmetrical antidots where in addition to the ac drive a dc bias was used. For each sample, the rectified dc voltage is measured as a function of drive amplitude and frequency, magnetic field, and temperature. As unambiguously shown by our data, the voltage rectification in the asymmetric antidots is induced by the intrinsic asymmetry in the pinning potential created by the antidots, whereas the rectification in the symmetric antidots is induced by the dc bias. In addition, the experiments reveal interesting collective phenomena in the vortex ratchet effect. At fields below the first matching field (H-1), the dc-voltage-ac-drive characteristics present two rectification peaks, which is interpreted as an interplay between the one-dimensional motion of weakly pinned incommensurate vortex rows and the two-dimensional motion of the whole vortex lattice. We also discuss the different dynamical regimes controlling the motion of interstitial and trapped vortices at fields higher than H-1 and their implications for the vortex ratchet effect.
机译:已经在以亚微米解毒剂的正方形阵列图案化的Al膜中研究了涡旋棘轮效应。我们已经研究了两组样品的传输特性:(i)非对称解毒点,其中涡流由无偏交流电流驱动;(ii)对称解毒点,除了交流驱动之外,还使用直流偏置。对于每个样品,整流直流电压均根据驱动幅度和频率,磁场和温度进行测量。正如我们的数据所明确显示的那样,非对称解毒剂中的电压整流是由解毒剂产生的固定电位的固有不对称性引起的,而对称解毒剂中的整流是由直流偏置引起的。此外,实验还揭示了涡旋棘轮效应中有趣的集体现象。在低于第一个匹配场(H-1)的场上,直流电压交流驱动特性呈现两个整流峰,这被解释为弱固定的不相称旋涡行的一维运动与二维运动之间的相互作用。整个漩涡晶格的运动。我们还讨论了控制高于H-1场的间隙和捕获涡旋运动的不同动力学机制,以及它们对涡旋棘轮效应的影响。

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