首页> 外文会议>IEEE International Symposium on Circuits and Systems >On Carving Basic Boolean Functions on Graphene Nanoribbons Conduction Maps
【24h】

On Carving Basic Boolean Functions on Graphene Nanoribbons Conduction Maps

机译:关于在石墨烯纳米带导电图上雕刻基本布尔函数的研究

获取原文

摘要

As CMOS feature size approaches atomic dimensions, unjustifiable static power, reliability, and economic implications are exacerbating, prompting for research and development on new materials, devices, and/or computation paradigms. Within this context, Graphene Nanoribbons (GNRs), owing to graphene's excellent electronic properties, may serve as basic blocks for carbon-based nanoelectronics. En route to GNR-based logic circuits, the ability to externally control GNRs' conduction to map a basic Boolean logic function onto its electrical characteristics, with a high 1ON/1OFFratio, and uncompromised carriers mobility, is the main desideratum. To this end, we augment a trapezoidal GNR with top gates as controlling inputs, and investigate its conductance G by means of the NEGF-Landauer formalism. Further, we demonstrate that the butterfly GNR can exhibit conduction maps (high G for logic “1”, and low G for logic “0”) capturing the functionality of 2 and 3-input Boolean gates, by properly adjusting its topology and dimensions. Our simulations prove butterfly GNR structure capability to capture basic Boolean logic transfer functions, while potentially providing 30× and 3000× smaller propagation delay and gate active area, respectively, when compared to 15 nm CMOS equivalent counterparts, establishing GNR's potential as basic building block for future graphene-based logic gates.
机译:由于CMOS特征尺寸接近原子尺寸,不精确的静态功率,可靠性和经济影响正在加剧,促使在新材料,设备和/或计算范例上进行研发。在此上下文中,由于石墨烯的优异电子性质,石墨烯纳米波琴(GNRS)可以用作基于碳的纳米电子的基本块。途中到基于GNR的逻辑电路,能够外部控制GNRS的传导,将基本布尔逻辑功能映射到其电气特性,高1 上 / 1 关闭 比例和无与伦比的运营商移动性,是主要的缺失性。为此,我们将梯形GNR扩大到顶部栅极作为控制输入,并通过Negf-Landauer的形式主义来研究其电导g。此外,我们证明蝴蝶GNR可以通过适当地调整其拓扑和尺寸来表现出捕获2和逻辑“1”的导通图(对于逻辑“1”的低G,而LOW G为逻辑“0”)。我们的模拟证明蝴蝶GNR结构能力捕获基本的布尔逻辑传输功能,同时可能分别提供30×和3000×较小的传播延迟和栅极有效区域,与15 nm CMOS等效对应物相比,建立了GNR的基本构建块基于Graphene的逻辑门。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号