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首页> 外文期刊>Scientific reports. >Microwave field frequency and current density modulated skyrmion-chain in nanotrack
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Microwave field frequency and current density modulated skyrmion-chain in nanotrack

机译:纳米轨道中的微波场频率和电流密度调制天文链

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Magnetic skyrmions are promising candidates as information carriers for the next-generation spintronic devices because of their small size, facile current-driven motion and topological stability. The controllable nucleation and motion of skyrmions in magnetic nanostructures will be essential in future skyrmionic devices. Here, we present the microwave assisted nucleation and motion of skyrmion-chains in magnetic nanotrack by micromagnetic simulation. A skyrmion-chain is a one-dimensional cluster of equally spaced skyrmions. A skyrmion-chain conveys an integer bit n when it consists of n skyrmions. A series of skyrmion-chains with various lengths is generated and moved in the nanotrack driven by spin-polarized current. The period, length and spacing of the skyrmion-chains can be dynamically manipulated by controlling either the frequency of the microwave field or the time dependent spin-polarized current density. A skyrmion-chain behaves as a massless particle, where it stops without delay when the current is stopped. Their velocity is found to be linearly dependent on the current density and insensitive to the frequency and amplitude of the excitation microwave field. Uniform motion of trains of skyrmion-chains in nanotrack offers a promising approach for spintronic multi-bit memories containing series of skyrmion-chains to represent data stream.
机译:磁性天体离子由于其体积小,电流驱动的运动和拓扑稳定性而成为下一代自旋电子设备的信息载体。磁性纳米结构中天体离子的可控成核和运动在未来的天体离子设备中将至关重要。在这里,我们通过微磁模拟介绍了微波辅助的成核和天体离子链在磁性纳米轨道中的运动。天体离子链是等距天体的一维簇。当长尾链由n个长尾链组成时,它传送整数n。在自旋极化电流的驱动下,产生了一系列具有各种长度的天琴链,并在纳米轨道中移动。通过控制微波场的频率或与时间有关的自旋极化电流密度,可以动态地操纵天蝎子链的周期,长度和间距。天rm子链的行为就像是无质量的粒子,当电流停止时,它在没有延迟的情况下停止。发现它们的速度与电流密度线性相关,并且对激发微波场的频率和振幅不敏感。纳米轨道上的天敌链链的均匀运动为包含一系列天敌链表示数据流的自旋电子多位存储器提供了一种有前途的方法。

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