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Energy efficient computing using coupled Dual-Pillar Spin Torque Nano Oscillators

机译:使用耦合的双支柱自旋扭矩纳米振荡器进行节能计算

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We present a Dual-Pillar Spin-Torque Nano Oscillator (DP-SNTO) suitable for energy-efficient information processing. The proposed DP-STNO consists of a low resistance Giant Magneto-Resistance (GMR) path that allows ultra-low voltage biasing of the oscillating ferromagnetic-free-layer, and a high resistance Tunneling Magneto-Resistance (TMR) path that provides amplified RF-signal and facilitates easy sensing mechanism. The free-layers of multiple DP-STNOs can be coupled using spin-wave (or electrical coupling) to accomplish complex signal processing tasks, like image-segmentation, with high energy-efficiency. Simulations show that DP-STNO can be ∼50× more energy-efficient as compared to a standard two-terminal STNO and can hence be more suitable for integration with CMOS for non-Boolean computing and RF-signaling applications.
机译:我们提出了一种适用于节能信息处理的双支柱自旋扭矩纳米振荡器(DP-SNTO)。拟议中的DP-STNO包括一个低电阻的巨型磁阻(GMR)路径和一个提供放大的RF的高电阻隧穿磁阻(TMR)路径,该路径可对振荡的铁磁自由层进行超低电压偏置。 -信号,并简化了感应机制。可以使用自旋波(或电耦合)耦合多个DP-STNO的自由层,从而以高能效完成复杂的信号处理任务,例如图像分段。仿真表明,与标准的两端STNO相比,DP-STNO的能效高约50倍,因此更适合与CMOS集成用于非布尔计算和RF信号应用。

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