Gillijns W, Silhanek A V, Moshchalkov V V, Reichhardt C J Olson, Reichhardt C
INPAC-Institute for Nanoscale Physics and Chemistry, K.U. Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium.
Phys Rev Lett. 2007 Dec 14;99(24):247002. doi: 10.1103/PhysRevLett.99.247002.
We experimentally demonstrate that the origin of multiply reversed rectified vortex motion in an asymmetric pinning landscape not only is a consequence of the vortex-vortex interactions but also essentially depends on the ratio between the characteristic interaction distance and the period of the asymmetric pinning potential. We study four samples with different periods d of the asymmetric potential. For large d the dc voltage V(dc) recorded under a ac excitation indicates that the average vortex drift is from bigger to smaller dots for all explored positive fields. As d is reduced, a series of sign reversals in the dc response are observed as a function of field. We show that the number of sign reversals increases as d decreases. These findings are in agreement with recent computer simulations and illustrate the relevance of the different characteristic lengths for the vortex rectification effects.
我们通过实验证明,在非对称钉扎态势场中多次反向整流涡旋运动的起源不仅是涡旋 - 涡旋相互作用的结果,而且本质上取决于特征相互作用距离与非对称钉扎势周期之间的比率。我们研究了四个具有不同非对称势周期d的样品。对于较大的d,在交流激励下记录的直流电压V(dc)表明,对于所有探索的正场,平均涡旋漂移是从较大的点到较小的点。随着d的减小,观察到直流响应中一系列符号反转随场变化。我们表明,符号反转的数量随着d的减小而增加。这些发现与最近的计算机模拟结果一致,并说明了不同特征长度对涡旋整流效应的相关性。