论文标题

涡流引导和棘轮效应的上限限制

Upper frequency limits for vortex guiding and ratchet effects

论文作者

Dobrovolskiy, O. V., Begun, E., Bevz, V. M., Sachser, R., Huth, M.

论文摘要

磁通量量子的引导和整流运动是纳米结构超导体的磁反应的重要效果。尽管在低AC频率下,这些效应得到了充分的理解,但它们在较高的AC频率下的表现仍然很少。在这里,我们探索了带有铁磁纳米纹状体装饰的外延NB膜中超导涡流的指导和整流净运动的上限限制。通过将宽带电谱与电阻测量相结合,我们揭示了以大约700 MHz的几何定义频率下的整流电压消失。相比之下,与涡流指导相关的低AC损坏响应持续约为2 GHz。该值对应于与纳米条引起的固定电势相关联的含量$ f_ \ mathrm {d}^\ mathrm {s} $,并显示了相应涡流lattice配置的峰值。在纳米条上以角度$α$应用DC和微波交流的总和,已经发现$ f_ \ mathrm {d}^\ mathrm {s}(α)$的角度依赖性与下降电流的角度依赖性相关。总的来说,我们的发现表明,具有较高$ f_ \ mathrm {d}^\ mathrm {s} $的超导体对于在GHz AC频率范围内进行有效的涡流操作而受到青睐。

Guided and rectified motion of magnetic flux quanta are important effects governing the magneto-resistive response of nanostructured superconductors. While at low ac frequencies these effects are rather well understood, their manifestation at higher ac frequencies remains poorly investigated. Here, we explore the upper frequency limits for guided and rectified net motion of superconducting vortices in epitaxial Nb films decorated with ferromagnetic nanostripes. By combining broadband electrical spectroscopy with resistance measurements we reveal that the rectified voltage vanishes at a geometrically defined frequency of about 700 MHz. By contrast, vortex guiding-related low-ac-loss response persists up to about 2 GHz. This value corresponds to the depinning frequency $f_\mathrm{d}^\mathrm{s}$ associated with the washboard pinning potential induced by the nanostripes and exhibiting peaks for the commensurate vortex lattice configurations. Applying a sum of dc and microwave ac currents at an angle $α$ with respect to the nanostripes, the angle dependence of $f_\mathrm{d}^\mathrm{s}(α)$ has been found to correlate with the angle dependence of the depinning current. In all, our findings suggest that superconductors with higher $f_\mathrm{d}^\mathrm{s}$ should be favored for an efficient vortex manipulation in the GHz ac frequency range.

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