论文标题

电压驱动的交换共振达到100 \%机械效率

Voltage-driven exchange resonance achieving 100\% mechanical efficiency

论文作者

Tang, Junyu, Cheng, Ran

论文摘要

由电流引起的扭矩驱动的磁共振是研究磁性材料的关键工具,但频率和机械效率非常有限。我们提出了一种替代机制,即电压引起的扭矩,以实现高频磁力化动力学的高效率。当铁磁体 - 磁管绝缘体 - 铁磁铁三层异质结构被用作绝热量子电机时,会引起电压引起的扭矩,这是由于两个接口上的拓扑电子在两个接口上的绝热运动,并在两个级别的交换模式上与两个级别的交换模式相对行动 - 不同之处。交换模式的共振频率比铁磁共振的频率高得多,伴随着拓扑电荷泵送,导致共振点的电气入口峰值尖锐。由于输出电流纯粹是绝热的,而耗散电流则相同消失,因此提出的电压驱动的交换谐振需要接近统一的机械效率非常高,这在任何电流驱动的系统中都是不可能的。

Magnetic resonances driven by current-induced torques are crucial tools to study magnetic materials but are very limited in frequency and mechanical efficiency. We propose an alternative mechanism, voltage-induced torque, to realize high efficiency in generating high-frequency magnetization dynamics. When a ferromagnet-topological insulator-ferromagnet trilayer heterostructure is operated as an adiabatic quantum motor, voltage-induced torque arises from the adiabatic motion of gapped topological electrons on the two interfaces and act oppositely on the two ferromagnetic layers, which can excite the exchange mode where the two ferromagnetic layers precess with a $π$-phase difference. The exchange mode resonance, bearing a much higher frequency than the ferromagnetic resonance, is accompanied by topological charge pumping, leading to a sharp peak in electrical admittance at the resonance point. Because the output current is purely adiabatic while dissipative current vanishes identically, the proposed voltage-driven exchange resonance entails a remarkably high mechanical efficiency close to unity, which is impossible in any current-driven systems.

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