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Nanomechanical Encoding Method Using Enhanced Thermal Concentration on a Metallic Nanobridge

机译:纳米机械编码方法在金属纳米载体上的增强热浓度

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摘要

We present a fast, energy-efficient nanothermomechanical encoding scheme for digital information storage and retrieval. Digital encoding processes are conducted by the bistable electrothermal actuation of a scalable nanobridge device. The electrothermal energy is highly concentrated by enhanced electron/phonon scattering and heat insulation in a sub-100 nm metallic layer. The efficient conversion of electrothermal energy into mechanical strain allows digital switching and programming processes within 60 ns at 0.75 V with a programming energy of only 54 pJ. Furthermore, this encoding scheme together with the thermally robust design enables data retention at temperatures up to 400 degrees C. These results suggest that the proposed nano-thermomechanical encoding method could contribute to low-power electronics and robust information storage/retrieval systems.
机译:我们为数字信息存储和检索提供了一种快速,节能的纳米机械编码方案。 数字编码过程由可伸缩的纳米铁器杆装置的双稳态电热致动进行。 电热能量通过增强的电子/声子散射和亚100nm金属层中的隔热高度浓缩。 电热能量到机械应变的有效转换允许在0.75V的60ns内的数字开关和编程过程,其编程能量仅为54 pj。 此外,这种编码方案与热稳健的设计一起使得能够在高达400℃的温度下保持数据。这些结果表明所提出的纳米热机械编码方法可以有助于低功率电子和鲁棒信息存储/检索系统。

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