论文标题

混合超导状态没有施加磁场

Mixed superconducting state without applied magnetic field

论文作者

Khanukov, Alex, Mangel, Itay, Wissberg, Shai, Keren, Amit, Kalisky, Beena

论文摘要

超导(SC)混合状态发生在II型超导体中,其中临界临界场HC2高于热力学临界场HC。当这些磁场之间的施加字段在这些字段之间时,自由能在样品的不同部分处的订单参数弱取决于阶参数(SC状态)或零(正常状态)。在本文中,我们证明了如何在零场中沿着超过超导体的线沿线的正常状态打开和关闭。该概念是基于较长的电流激发线圈,刺穿了环形超导体。该环的场经历零场,但是线圈产生的矢量电势会产生圆电流,该电流沿着样品中的先前存在成核点开始沿径向线破坏超导性。与磁场超导的破坏不同,矢量电位方法是可逆的和可重现的。从线圈中去除电流后,将回收全超导性,并且不同的冷却率产生相同的正常线。我们建议这种无磁场混合状态的潜在应用。

A superconducting (SC) mixed state occurs in type-II superconductors where the upper critical field Hc2 is higher than the thermodynamic critical field Hc. When an applied field is in between these fields, the free energy depends weakly on the order parameter which therefore can be small (SC state) or zero (normal state) at different parts of the sample. In this paper we demonstrate how a normal state along a line traversing a superconductor can be turned on and off externally in zero field. The concept is based on a long, current-carrying excitation coil, piercing a ringshaped superconductor. The ring experiences zero field, but the vector potential produced by the coil generates a circular current that destroys superconductivity along a radial line starting at preexisting nucleation points in the sample. Unlike the destruction of superconductivity with magnetic field, the vector potential method is reversible and reproducible; full superconductivity is recovered upon removing the current from the coil, and different cooldowns yield the same normal lines. We suggest potential applications of this magnetic-field-free mixed state.

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