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Graphene cantilever-based digital logic gates

机译:基于石墨烯悬臂的数字逻辑门

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Universal logic gates NAND and NOR along with NOT and XOR are successfully implemented using graphene cantilever structures. Three-dimensional (3D) modeling of different graphene cantilever structures is carried out using the COMSOL Multiphysics software. The high electrical conductivity of graphene makes it a better choice for the cantilever beams in this study. A very low actuation voltage of 1.57 V is obtained for a 2-mu m-long, 0.2-mu m-wide, and 5-nm-thick graphene cantilever beam. For all the cantilever-based logic gates, the switching speed is 45 ns. The simulated cantilever-based logic gates could enable the implementation of different digital circuits.
机译:使用石墨烯悬臂结构成功地实现了通用逻辑门NAND和NOR和NOT和XOR。使用COMSOL Multiphysics软件进行不同石墨烯悬臂结构的三维(3D)建模。石墨烯的高电导率使得这项研究中的悬臂梁是更好的选择。获得1.57V的非常低的致动电压,得到2-mu m-long,0.2μm宽和5nm厚的石墨烯悬臂梁。对于所有悬臂的逻辑门,开关速度为45 ns。模拟的悬臂基逻辑门可以实现不同的数字电路。

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