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首页> 外文期刊>Physical review, B >Transverse ac-driven and geometric ratchet effects for vortices in conformal crystal pinning arrays
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Transverse ac-driven and geometric ratchet effects for vortices in conformal crystal pinning arrays

机译:交流电驱动和几何棘轮效应,用于共形晶体固定阵列中的涡旋

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A conformal pinning array is created by taking a conformal transformation of a uniform hexagonal lattice to create a structure in which the sixfold ordering of the original lattice is preserved but which has a spatial gradient in the pinning site density. With a series of conformal arrays it is possible to create asymmetric substrates, and it was previously shown that when an ac drive is applied parallel to the asymmetry direction, a pronounced ratchet effect occurs with a net dc flow of vortices in the same direction as the ac drive. Here we show that when the ac drive is applied perpendicular to the substrate asymmetry direction, it is possible to realize a transverse ratchet effect where a net dc flow of vortices is generated perpendicular to the ac drive. The conformal transverse ratchet effect is distinct from previous versions of transverse ratchets in that it occurs due to the generation of non-Gaussian transverse vortex velocity fluctuations by the plastic motion of vortices, so that the system behaves as a noise correlation ratchet. The transverse ratchet effect is much more pronounced in the conformal arrays than in random gradient arrays and is absent in square gradient arrays due the different nature of the vortex flow in each geometry. We show that a series of reversals can occur in the transverse ratchet effect due to changes in the vortex flow across the pinning gradient as a function of vortex filling, pinning strength, and ac amplitude. We also consider the case where a dc drive applied perpendicular to the substrate asymmetry direction generates a net flow of vortices perpendicular to the dc drive, producing what is known as a geometric or drift ratchet that again arises due to non-Gaussian dynamically generated fluctuations. The drift ratchet is more efficient than the ac driven ratchet and also exhibits a series of reversals for varied parameters. Our results should be general to a wide class of systems undergoing nonequilibrium dynamics on conformal substrates, such as colloidal particles on optical traps.
机译:通过对均匀的六边形格子进行保形变换来创建共形钉扎阵列,以创建一种结构,其中保留原始格子的六倍顺序,但钉扎位点密度具有空间梯度。借助一系列共形阵列,可以创建不对称的基板,并且先前已显示出,在平行于不对称方向施加交流驱动器时,涡流的净直流直流流在与不对称方向相同的方向上会产生明显的棘轮效应。交流驱动器。在此我们表明,当垂直于基板非对称方向施加交流驱动器时,可以实现横向棘轮效应,其中垂直于交流驱动器产生的净直流涡流。共形横向棘轮效应与先前版本的横向棘轮效应不同,它的发生是由于涡流的塑性运动产生了非高斯横向涡旋速度波动,因此该系统表现为噪声相关棘轮。在共形阵列中,横向棘轮效应比在随机梯度阵列中更为明显,而在方形梯度阵列中则不存在,这是由于每种几何形状中涡流的不同性质所致。我们表明,由于跨越钉扎梯度的涡流随涡流填充,钉扎强度和交流振幅的变化,在横向棘轮效应中会发生一系列逆转。我们还考虑了垂直于基板不对称方向施加的直流驱动器产生垂直于直流驱动器的净涡流的情况,产生了所谓的几何棘轮或漂移棘轮,由于非高斯动态产生的波动而再次出现。漂移棘轮比交流驱动棘轮更有效,并且对于各种参数也表现出一系列反转。我们的结果应该适用于在保形基质(例如光阱上的胶体颗粒)上经历非平衡动力学的各种系统。

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