论文标题
可重新配置的风车人工冰冰和超导体混合动力设备
Reconfigurable pinwheel artificial-spin-ice and superconductor hybrid device
论文作者
论文摘要
在相互作用的颗粒介质中控制潜在景观的能力可能会导致吸引人的集体行为和创新功能。在这里,我们利用链轮人工旋转冰结构的空间可重构磁性电位来量身定制超导涡流的运动。人造风车自旋冰中的磁电荷的重构链结构,磁电和超导涡流之间的强相互作用允许对基础超导薄膜的运输特性进行重大修改,从而产生可逆的可逆涡流效应。我们的结果突出了一种有效而简单的方法,即使用人工自旋冰作为原位可重新配置的纳米级能量景观来设计可重编程的超导电子设备,这也可以应用于其他磁性粒子系统(例如磁性弹性)中对其他磁性粒子系统中属性和功能的原位控制。
The ability to control the potential landscape in a medium of interacting particles could lead to intriguing collective behavior and innovative functionalities. Here, we utilize spatially reconfigurable magnetic potentials of a pinwheel artificial spin ice structure to tailor the motion of superconducting vortices. The reconstituted chain structures of the magnetic charges in the artificial pinwheel spin ice and the strong interaction between magnetic charges and superconducting vortices allow significant modification of the transport properties of the underlying superconducting thin film, resulting in a reprogrammable resistance state that enables a reversible and switchable vortex Hall effect. Our results highlight an effective and simple method of using artificial spin ice as an in-situ reconfigurable nanoscale energy landscape to design reprogrammable superconducting electronics, which could also be applied to the in-situ control of properties and functionalities in other magnetic particle systems, such as magnetic skyrmions.