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二进制在“对称”势能景观中的切换。

Binary switching in a 'symmetric' potential landscape.

机构信息

Department of Electrical and Computer Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

出版信息

Sci Rep. 2013 Oct 24;3:3038. doi: 10.1038/srep03038.

Abstract

A binary switch is the basic building block for information processing. The potential energy profile of a bistable binary switch is a 'symmetric' double well. The traditional method of switching it from one state (one well) to the other is to tilt the profile towards the desired state. Here, we present a case, where no such tilting is necessary to switch successfully, even in the presence of thermal noise. This happens because of the built-in dynamics inside the switch itself. It differs from the general perception on binary switching that in a 'symmetric' potential landscape, the switching probability is 50% in the presence of thermal noise. Our results, considering the complete three-dimensional potential landscape, demonstrate intriguing phenomena on binary switching mechanism. With experimentally feasible parameters, we theoretically demonstrate such intriguing possibility in electric field induced magnetization switching of a shape-anisotropic single-domain magnetostrictive nanomagnet with two stable states at room-temperature.

摘要

二进制开关是信息处理的基本构建块。双稳态二进制开关的位能曲线是一个“对称”的双势阱。将其从一个状态(一个势阱)切换到另一个状态的传统方法是将势曲线倾斜到期望的状态。在这里,我们提出了一种情况,即使存在热噪声,也不需要这样的倾斜就可以成功切换。这是因为开关本身内部的内置动力学。这与关于二进制开关的一般认识不同,即在“对称”的势能景观中,存在热噪声时的切换概率为 50%。我们的结果考虑了完整的三维势能景观,展示了二进制开关机制的有趣现象。在实验上可行的参数下,我们在室温下具有两个稳定状态的形状各向异性单畴磁致伸缩纳米磁铁的电场诱导磁化开关中理论上证明了这种有趣的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4f4/3807113/381af8fb00b9/srep03038-f1.jpg

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