Institute of Theoretical Physics, NSC-KIPT, 61108 Kharkiv, Ukraine. Physical Department, Kharkiv National University, 61077 Kharkiv, Ukraine.
J Phys Condens Matter. 2014 Jan 15;26(2):025703. doi: 10.1088/0953-8984/26/2/025703. Epub 2013 Dec 5.
The mixed-state resistive response of a superconductor thin film with an asymmetric washboard pinning potential subject to superimposed dc and ac currents of arbitrary amplitudes and frequency at finite temperature is theoretically investigated. The problem is considered in the single-vortex approximation, relying upon the exact solution of the Langevin equation in terms of a matrix continued fraction. The dc voltage response and the absorbed power in ac response are analyzed as functions of dc bias and ac current amplitude and frequency in a wide range of corresponding dimensionless parameters. Predictions are made of (i) a reversal of the rectified voltage at small dc biases and strong ac drives and (ii) a non-monotonic enhancement of the absorbed power in the nonlinear ac response at far sub-depinning frequencies. It is elucidated how and why both these effects appear due to the competition of the fixed internal and the tunable, dc bias-induced external asymmetry of the potential as the only reason. This is distinct from other scenarios used for explaining the vortex ratchet reversal effect so far.
在有限温度下,对具有不对称搓板钉扎势的超导薄膜在叠加的直流和交流电流作用下的混合态电阻响应进行了理论研究。该问题在单涡旋近似下考虑,依赖于 Langevin方程的矩阵连分式的精确解。在相应的无量纲参数的宽范围内,分析了直流偏压和交流电流幅度和频率作为直流电压响应和交流响应中吸收功率的函数。预测了(i)在小直流偏压和强交流驱动下整流电压的反转,以及(ii)在远低于去钉扎频率的非线性交流响应中吸收功率的非单调增强。阐明了为什么这两种效应都是由于势的固定内部和可调节的直流偏压诱导的外部不对称性之间的竞争造成的,这是迄今为止解释涡旋棘轮反转效应的其他情况所没有的。