首页 | 本学科首页   官方微博 | 高级检索  
     

超薄栅介质MOSFET直接隧穿电流自洽解模型
引用本文:许胜国,徐静平,季峰,陈卫兵,李艳萍.超薄栅介质MOSFET直接隧穿电流自洽解模型[J].固体电子学研究与进展,2007,27(4):545-549.
作者姓名:许胜国  徐静平  季峰  陈卫兵  李艳萍
作者单位:华中科技大学电子科学与技术系,武汉,430074;华中科技大学电子科学与技术系,武汉,430074;华中科技大学电子科学与技术系,武汉,430074;华中科技大学电子科学与技术系,武汉,430074;华中科技大学电子科学与技术系,武汉,430074
基金项目:国家自然科学基金 , 湖北省自然科学基金
摘    要:采用自洽解方法求解一维薛定谔方程和二维泊松方程,得到电子的量子化能级和相应的浓度分布,利用MWKB方法计算电子隧穿几率,从而得到不同栅偏置下超薄栅介质MOSFET的直接隧穿电流模型。一维模拟结果与实验数据十分吻合,表明了模型的准确性和实用性。二维模拟结果表明,低栅压下,沟道边缘隧穿电流远大于沟道中心隧穿电流,沟道各处的隧穿电流均大于一维模拟结果;高栅压下,隧穿电流在沟道的分布趋于一致,且逼近一维模拟结果。

关 键 词:隧穿电流  自洽解  金属-氧化物-半导体场效应晶体管  超薄栅介质
文章编号:1000-3819(2007)04-545-05
收稿时间:2006-01-23
修稿时间:2006-04-07

Self-consistent Model on Direct-tunneling Current of Ultra-thin Gate Dielectric MOSFET
XU Shengguo,XU Jingping,JI Feng,CHEN Weibing,LI Yanping.Self-consistent Model on Direct-tunneling Current of Ultra-thin Gate Dielectric MOSFET[J].Research & Progress of Solid State Electronics,2007,27(4):545-549.
Authors:XU Shengguo  XU Jingping  JI Feng  CHEN Weibing  LI Yanping
Abstract:Quantized energy levels and electron density distribution are calculated by solving the one-dimensional Schr(?)dinger equations and two-dimensional Poisson equation self-consistent- ly.Tunneling probability of electrons through the gate oxide is obtained through the modified WKB(MWKB) method.The gate direct tunneling current in ultra-thin oxide is computed with different device parameters.Comparison of 1-D simulation results with experiment data verifies the validity and extensive applicability of this model.2-D (?)ulation results indicate that,for lower gate voltages,the direct tunneling current from the channel edges is much lager than that from the channel center,and the direct tunneling current from the whole channel is larger than 1- D simulation results.For higher gate voltages,the tunneling current from all the positions of channel trend to be the same and approach to 1-D simulation results.
Keywords:tunneling current  self-consistent calculation  MOSFET  ultra thin gate dielectric
本文献已被 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号