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Phase locking of vortex-based spin-torque nanocontact oscillators by antivortices

机译:基于涡旋的基于涡旋的自旋扭矩纳米接触振荡器的锁相

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摘要

Magnetic vortices formed at a nanocontact undergo gyrotropic oscillations when driven by a spin-torque providing potential applications as microwave nano-oscillators; however, to increase the power output it is necessary to use an array of synchronized oscillators. Here a theory is developed for two nanocontact oscillators that are interacting through an intermediate antivortex. The confining potential for the two vortices formed at each nanocontact as well as the antivortex is the Oersted-Ampere field about each nanocontact. Solution of the Thiele equation for this system indicates that the nanocontact vortex oscillators will be phase locked over a wide range of nanocontact currents.
机译:当由自旋转矩驱动时,在纳米触点上形成的磁涡流会发生回旋振荡,为微波纳米振荡器提供了潜在的应用。但是,为了增加功率输出,必须使用一组同步振荡器。在这里,为通过中间反涡旋相互作用的两个纳米接触振荡器开发了一种理论。在每个纳米接触以及反涡形成的两个旋涡的约束势是每个纳米接触周围的Oersted-Ampere场。该系统的Thiele方程的解表明,纳米接触涡旋振荡器将在很宽的纳米接触电流范围内锁相。

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