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Triode for Magnetic Flux Quanta

机译:磁通量量子三极管

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摘要

In an electronic triode, the electron current emanating from the cathode is regulated by the electric potential on a grid between the cathode and the anode. Here we demonstrate a triode for single quantum magnetic field carriers, where the flow of individual magnetic vortices in a superconducting film is regulated by the magnetic potential of striae of soft magnetic strips deposited on the film surface. By rotating an applied in-plane field, the magnetic strip potential can be varied due to changes in the magnetic charges at the strip edges, allowing accelerated or retarded motion of magnetic vortices inside the superconductor. Scaling down our design and reducing the gap width between the magnetic stripes will enable controlled manipulation of individual vortices and creation of single flux quantum circuitry for novel high-speed low-power superconducting electronics.
机译:在电子三极管中,从阴极发出的电子电流由阴极和阳极之间的栅极上的电势调节。在这里,我们演示了用于单量子磁场载体的三极管,其中超导膜中各个磁涡流的流动由沉积在膜表面上的软磁条的条纹的磁势调节。通过旋转施加的平面内磁场,由于带边缘处的电荷变化,磁条电势可以变化,从而允许超导体内部的磁涡流加速或延迟运动。缩小设计规模并减小磁条之间的间隙宽度,将可以控制单个涡流,并为新型高速低功率超导电子产品创建单通量量子电路。

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