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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Non-equilibrium charge and spin transport insuperconducting-ferromagnetic- superconducting point contacts
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Non-equilibrium charge and spin transport insuperconducting-ferromagnetic- superconducting point contacts

机译:非平衡电荷和旋转传输耐用 - 铁磁 - 超导点接触

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摘要

The conventional Josephson effect may be modified by introducing spin-active scattering in the interface layer of the junction. Here, we discuss a Josephson junction consisting of two s-wave superconducting leads coupled over a classical spin that precesses with the Larmor frequency due to an external magnetic field. This magnetically active interface results in a time-dependent boundary condition with different tunnelling amplitudes for spin-up and -down quasiparticles and where the precession produces spin-flip scattering processes. As a result, the Andreev states develop sidebands and a non-equilibrium population that depend on the details of the spin precession. The Andreev states carry a steady-state Josephson charge current and a time-dependent spin current, whose current-phase relations could be used to characterize the precessing spin. The spin current is supported by spin-triplet correlations induced by the spin precession and creates a feedback effect on the classical spin in the form of a torque that shifts the precession frequency. By applying a bias voltage, the Josephson frequency adds another complexity to the situation and may create resonances together with the Larmor frequency. These Shapiro resonances manifest as torques and, under suitable conditions, are able to reverse the direction of the classical spin in sub-nanosecond time. Another characteristic feature is the subharmonic gap structure in the DC charge current displaying an even-odd effect attributable to precession-assisted multiple Andreev reflections.
机译:可以通过在结的界面层中引入旋转主动散射来修改传统的Josephse效应。这里,我们讨论由两个S波超导引线组成的Josephse one结,该引线耦合在典型的旋转上,该旋转引起的具有包括外部磁场的传法频率。该磁极活性接口导致时间依赖的边界条件,其具有不同的隧道振动幅度,用于旋转和展开Quasiply,其中Precession产生自旋翻转散射过程。结果,Andreev状态开发了边带和非平衡群体,取决于旋转进出的细节。 Andreev状态携带稳态的Josephson充电电流和时间依赖的旋转电流,其当前相位关系可用于表征精细旋转。通过旋转预进出诱导的旋转三重态相关性支持旋转电流,并以扭转频率的扭矩的形式产生对经典旋转的反馈效果。通过施加偏置电压,Josephse频率对情况增加了另一种复杂性,并且可以与传法频率一起产生共振。这些Shapiro共振表现为Torques,并且在合适的条件下,能够在亚纳秒时旋转典型旋转的方向。另一个特征是DC电荷电流中的子发布间隙结构,其占均归辅助多个AndreeV反射的均匀效应。

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