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Micro-magnetic simulations of correlated switching in touching circular nano-magnetic elements

机译:触摸圆形纳米磁性元件相关切换的微磁模拟

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Past studies have demonstrated that logic states can be represented using the rotation of the magnetization at flux-closed remanence in individual ferromagnetic disks. In this work, we present the results of micro-magnetic simulations of touching circular elements that can be used for room operable magnetic quantum cellular automata. Like gears in a mechanical system, the chirality of the magnetization alternates from element to element, as determined through interaction with neighbors. The switching of touching symmetric elements occurred when the applied field was removed, meaning minimal energy loss during the process. Maintaining coherence of opposite chirality in chains of elements could be achieved with the introduction of a biasing element to eliminate the bidirectionality of interaction.
机译:过去的研究已经证明,可以使用在各个铁磁盘中的磁通闭合磁化下的磁化旋转来表示逻辑状态。在这项工作中,我们介绍了可用于室内可操作的磁量子蜂窝自动机的触摸圆形元件的微磁模拟结果。与机械系统中的齿轮一样,通过与邻居的相互作用来确定,磁化的手感从元件到元件。触摸对称元素的切换发生在移除施加的场,意味着过程中的能量损失最小。可以通过引入偏置元件来实现元素链中相对手术的相干性,以消除相互作用的双向性。

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