论文标题

在$φ_0$ $φ_0$连接在外部辐射下的磁化和约瑟夫森振荡的锁定

Locking of magnetization and Josephson oscillations at ferromagnetic resonance in $φ_0$ junction under external radiation

论文作者

Abdelmoneim, S. A., Shukrinov, Yu. M., Kulikov, K. V., ElSamman, H., Nashaat, M.

论文摘要

我们证明了$φ_0$ Josephson交界处的磁性进动的外部电磁辐射通过铁磁共振区域的Josephson振荡。这导致磁化对偏置电流的依赖性一步,其位置取决于辐射频率和谐振曲线的形状。在具有强的自旋轨道耦合的连接处,静脉曲张特征上出现了负差分电阻的状态,从而导致额外的锁定步骤。对电压和磁化的时间依赖性及其傅立叶变换的详细研究表明,相应的振荡在第一步中具有与振荡相同的频率,但是它们具有不同的振幅和对辐射频率的不同依赖性。这不仅可以控制频率,还可以控制锁定区域中磁性动力的幅度。它为在异常的约瑟夫森交界等混合系统中控制和操纵磁矩的控制和操纵提供了独特的观点。

We demonstrate the locking by external electromagnetic radiation of magnetic precession in the $ φ_0 $ Josephson junction through Josephson oscillations in the region of ferromagnetic resonance. This leads to a step in the dependence of the magnetization on the bias current, the position of which is determined by the radiation frequency and the shape of the resonance curve. In junctions with a strong spin-orbit coupling, states with negative differential resistance appear on the IV-characteristic, resulting in an additional locking step. A detailed study of the time dependence of voltage and magnetization and their Fourier transforms shows that the corresponding oscillations have the same frequency as the oscillations at the first step, but they have a different amplitude and different dependence on the radiation frequency. This makes it possible to control not only the frequency, but also the amplitude of the magnetic precession in the locking region. It opens up unique perspectives for the control and manipulation of magnetic moment in hybrid systems such as anomalous Josephson junctions.

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