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Evaluating Spintronic Devices Using the Modular Approach

机译:使用模块化方法评估自旋电子器件

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Over the past decade, a large family of spintronic devices has been proposed as candidates for replacing CMOS for future digital logic circuits. Using the recently developed modular approach framework, we investigate and identify the physical bottlenecks and engineering challenges facing current spintronic devices. We then evaluate how systematic advancements in material properties and device design innovations impact the performance of spintronic devices, as a possible continuation of Moore's Law, even though some of these projections are speculative and may require technological breakthroughs. Finally, we illustrate the use of the modular approach as an exploratory tool for probabilistic networks, using superparamagnetic magnets as building blocks for such networks. These building blocks leverage the inherent physics of stochastic spin-torque switching and could provide ultracompact and efficient hardware for beyond-Boolean computational paradigms.
机译:在过去的十年中,人们提出了许多自旋电子器件系列,以替代CMOS来替代未来的数字逻辑电路。使用最近开发的模块化方法框架,我们调查并确定了当前自旋电子设备面临的物理瓶颈和工程挑战。然后,我们评估材料性能的系统进步和器件设计创新如何影响自旋电子器件的性能,这可能是摩尔定律的延续,尽管其中一些预测是推测性的,可能需要技术突破。最后,我们说明了使用模块化方法作为概率网络的探索工具,并使用超顺磁性磁体作为此类网络的构建块。这些构建块利用了随机自旋转矩切换的固有物理特性,可以为超布尔计算范式提供超紧凑而高效的硬件。

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