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一种具有超低能量延迟积的抗错误非易失性磁弹性通用逻辑门。

An error-resilient non-volatile magneto-elastic universal logic gate with ultralow energy-delay product.

作者信息

Biswas Ayan K, Atulasimha Jayasimha, Bandyopadhyay Supriyo

机构信息

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

Department of Mechanical and Nuclear Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

出版信息

Sci Rep. 2014 Dec 23;4:7553. doi: 10.1038/srep07553.

Abstract

A long-standing goal of computer technology is to process and store digital information with the same device in order to implement new architectures. One way to accomplish this is to use nanomagnetic logic gates that can perform Boolean operations and then store the output data in the magnetization states of nanomagnets, thereby doubling as both logic and memory. Unfortunately, many of these nanomagnetic devices do not possess the seven essential characteristics of a Boolean logic gate : concatenability, non-linearity, isolation between input and output, gain, universal logic implementation, scalability and error resilience. More importantly, their energy-delay products and error rates tend to vastly exceed that of conventional transistor-based logic gates, which is unacceptable. Here, we propose a non-volatile voltage-controlled nanomagnetic logic gate that possesses all the necessary characteristics of a logic gate and whose energy-delay product is two orders of magnitude less than that of other nanomagnetic (non-volatile) logic gates. The error rate is also superior.

摘要

计算机技术的一个长期目标是用同一设备处理和存储数字信息,以实现新的架构。实现这一目标的一种方法是使用纳米磁逻辑门,它可以执行布尔运算,然后将输出数据存储在纳米磁体的磁化状态中,从而兼具逻辑和存储功能。不幸的是,许多这类纳米磁器件并不具备布尔逻辑门的七个基本特性:可串联性、非线性、输入与输出之间的隔离、增益、通用逻辑实现、可扩展性和容错能力。更重要的是,它们的能量延迟积和错误率往往大大超过传统晶体管逻辑门,这是不可接受的。在此,我们提出一种非易失性压控纳米磁逻辑门,它具备逻辑门所需的所有特性,其能量延迟积比其他纳米磁(非易失性)逻辑门小两个数量级。错误率也更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d37/4274515/a67717a8e801/srep07553-f1.jpg

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