Departement Fysica, Universiteit Antwerpen, Groenenborgerlaan 171, B-2020 Antwerpen, Belgium.
Phys Rev Lett. 2011 Oct 21;107(17):177008. doi: 10.1103/PhysRevLett.107.177008.
A Josephson phase shift can be induced in a Josephson junction by a strategically nearby pinned Abrikosov vortex (AV). For an asymmetric distribution of an imprinted phase along the junction (controlled by the position of the AV) such a simple system is capable of rectification of ac current in a broad and tunable frequency range. The resulting rectified voltage is a consequence of the directed motion of a Josephson antivortex which forms a pair with the AV when at local equilibrium. The proposed realization of the ratchet potential by an imprinted phase is more efficient than the asymmetric geometry of the junction itself, is easily realizable experimentally, and provides rectification even in the absence of an applied magnetic field.
约瑟夫森结中的约瑟夫森相位可以通过附近的局域钉扎的阿布里科索夫涡旋(AV)来诱导。对于沿结分布的印记相位的不对称分布(由 AV 的位置控制),这样的简单系统能够在宽且可调谐的频率范围内对交流电进行整流。所得整流电压是约瑟夫森反涡旋的定向运动的结果,当处于局域平衡时,约瑟夫森反涡旋与 AV 形成一对。通过印记相位实现的棘轮势比结本身的不对称几何形状更有效,在实验上易于实现,并且即使没有外加磁场也能提供整流。