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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Three-terminal magnetic tunnel junction synapse circuits showing spike-timing-dependent plasticity
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Three-terminal magnetic tunnel junction synapse circuits showing spike-timing-dependent plasticity

机译:三末磁隧道结突触电路显示穗定时依赖性可塑性

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There have been recent efforts towards the development of biologically-inspired neuromorphic devices and architecture. Here, we show a synapse circuit that is designed to perform spike-timing-dependent plasticity which works with the leaky, integrate, and fire neuron in a neuromorphic computing architecture. The circuit consists of a three-terminal magnetic tunnel junction with a mobile domain wall between two low-pass filters and has been modeled in SPICE. The results show that the current flowing through the synapse is highly correlated to the timing delay between the pre-synaptic and post-synaptic neurons. Using micromagnetic simulations, we show that introducing notches along the length of the domain wall track pins the domain wall at each successive notch to properly respond to the timing between the input and output current pulses of the circuit, producing a multi-state resistance representing synaptic weights. We show in SPICE that a notch-free ideal magnetic device also shows spike-timing dependent plasticity in response to the circuit current. This work is key progress towards making more bio-realistic artificial synapses with multiple weights, which can be trained online with a promise of CMOS compatibility and energy efficiency.
机译:最近有努力发展生物学激发的神经形状装置和建筑。在这里,我们展示了一个突触电路,该突触电路旨在执行峰值时序依赖性可塑性,其适用于神经形态计算架构中的泄漏,整合和消防神经元。电路由三端磁隧道结组成,两个低通滤波器之间的移动畴壁,并在香料中进行了建模。结果表明,流过突触当前高度相关突触前和突触后神经元之间的定时延迟。使用微磁性模拟,我们表明沿域壁轨道的长度引入凹槽,每个连续的凹口在每个连续的凹口处引入畴壁,以适当地响应电路的输入和输出电流脉冲之间的时序,产生代表突触的多状态电阻重量。我们在香料中展示了一种无凹口的理想磁性装置还响应电路电流表示尖峰定时依赖性可塑性。这项工作是制作多种重量的更多生物现实人工突触的关键进展,这可以通过CMOS兼容性和能效的承诺在线培训。

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