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Performance Characteristics of Strongly Correlated Bilayer Graphene for Post-CMOS Logic Devices

机译:CMOS逻辑器件强烈相关双层石墨烯的性能特征

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Post-CMOS logic in bilayer graphene is very promising due to the possibility of observing room temperature collective states. We present calculations of graphene bilayers and the conditions necessary for excitonic superfluidity. At room temperature, the maximum current the condensate can support is increased over low temperature values and we can achieve negative differential resistances greater than 3 orders of magnitude between the condensate current and the non-interacting quasiparticle current which flows after exceeding the maximum current.
机译:由于观察室温集体状态的可能性,双层石墨烯的后CMOS逻辑非常有前途。我们呈现石墨烯双层的计算和激发器超浊度所需的条件。在室温下,冷凝物可以支撑的最大电流在低温值上增加,我们可以在超过最大电流之后流动的冷凝水电流与非相互作用的Quasiplicle电流之间的负差分电阻大于3幅度。

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