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Brain-inspired computing with spin torque devices

机译:带有自旋扭矩设备的大脑启发式计算

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In this paper we discuss the potential of emerging spin-torque devices for computing applications. Recent proposals for spin-based computing schemes may be differentiated as ‘all-spin’ vs. hybrid, programmable vs. fixed, and, Boolean vs. non-Boolean. Allspin logic-styles may offer high area-density due to small form-factor of nano-magnetic devices. However, circuit and system-level design techniques need to be explored that leaverage the specific spin-device characterisitcs to achieve energy-efficiency, performance and reliability comparable to those of CMOS. The non-volatility of nano-magnets can be exploited in the design of energy and area-efficient programmable logic. In such logic-styles, spin-devices may play the dual-role of computing as well as memory-elements that provide field-programmability. Spin-based threshold logic design is presented as an example. Emerging spintronic phenomena may lead to ultra-low-voltage, current-mode, spin-torque switches that can offer attractive computing capabilities, beyond digital switches. Such devices may be suitable for non-Boolean data-processing applications which involve analog processing. Integration of such spin-torque devices with charge-based devices like CMOS and resistive memory can lead to highly energy-efficient information processing hardware for applicatons like pattern-matching, neuromorphic-computing, image-processing and data-conversion. Finally, we discuss the possibility of using coupled spin-torque nano oscillators for low-power non-Boolean computing.
机译:在本文中,我们讨论了新兴的自旋扭矩设备在计算应用中的潜力。关于基于自旋的计算方案的最新建议可以分为“全自旋”式与混合式,可编程式与固定式以及布尔值与非布尔值。由于纳米磁性器件的外形尺寸小,Allspin逻辑样式可以提供较高的面积密度。但是,需要探索电路和系统级设计技术,以减轻特定自旋器件的特性,以实现可与CMOS相媲美的能源效率,性能和可靠性。纳米磁体的非易失性可用于设计节能和面积高效的可编程逻辑。在这种逻辑形式中,自旋设备可以发挥计算的双重作用,并且可以提供提供现场可编程性的存储元素。以基于自旋的阈值逻辑设计为例。新兴的自旋电子现象可能会导致超低压,电流模式自旋转矩开关,这些开关可以提供超越数字开关的强大计算能力。这样的设备可能适用于涉及模拟处理的非布尔数据处理应用。此类自旋扭矩设备与基于电荷的设备(如CMOS)和电阻式存储器的集成可以产生用于模式匹配,神经形态计算,图像处理和数据转换等应用的高能效信息处理硬件。最后,我们讨论了使用耦合自旋转矩纳米振荡器进行低功耗非布尔计算的可能性。

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