Department of Physics, University of Notre Dame, Notre Dame, Indiana 46556, USA.
Phys Rev Lett. 2013 Jun 28;110(26):267001. doi: 10.1103/PhysRevLett.110.267001. Epub 2013 Jun 24.
Conformal crystals are nonuniform structures created by a conformal transformation of regular two-dimensional lattices. We show that gradient-driven vortices interacting with a conformal pinning array exhibit substantially stronger pinning effects over a much larger range of field than found for random or periodic pinning arrangements. The pinning enhancement is partially due to matching of the critical flux gradient with the pinning gradient, but the preservation of local ordering in the conformally transformed hexagonal lattice and the arching arrangement of the pinning also play crucial roles. Our results can be generalized to a wide class of gradient-driven interacting particle systems such as colloids on optical trap arrays.
共形晶体是通过正则二维晶格的共形变换而产生的非均匀结构。我们表明,梯度驱动的涡旋与共形钉扎阵列相互作用时,相比于随机或周期性钉扎排列,在更大的磁场范围内表现出更强的钉扎效应。这种钉扎增强部分归因于临界磁通梯度与钉扎梯度的匹配,但共形变换的六边形晶格中局部有序的保持和钉扎的拱形排列也起着至关重要的作用。我们的结果可以推广到广泛的梯度驱动相互作用粒子系统,例如光学陷阱阵列上的胶体。