蒙特卡罗方法
数字电子学
逻辑门
电子线路
晶体管
逆变器
电子
数码产品
逻辑模拟
电阻器–晶体管逻辑
集成电路
物理
计算机科学
电子工程
电气工程
通流晶体管逻辑
工程类
光电子学
数学
量子力学
统计
电压
作者
Miha Kikelj,Benjamin Lipovšek,F. Smole
标识
DOI:10.33180/infmidem2018.407
摘要
In the past decades MOS based digital integrated logic circuits have undergone a successful process of miniaturisation eventually leading to dimensions of a few nanometres. With the dimensions in the range of a few atomic radii the end of conventional MOS technology is approaching. Amongst the prospective candidates for sub 10nm logic are integrated logic circuits based on single-electron devices. In our contribution we present the use of MOSES (Monte-Carlo Single-Electronics Simulator) as a method for simulation of complementary single-electron logic circuits based on the orthodox theory. Simulations of single-electron devices including a single-electron box, a single-electron transistor and a complementary single-electron inverter were carried out. Their characteristics were evaluated at different temperatures and compared to measurement results obtained at other institutions. The potential for room-temperature operation was also assessed.
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