量子隧道
电容
材料科学
电子
凝聚态物理
量子电容
量子
缩放比例
光电子学
物理
电极
量子力学
数学
几何学
作者
S.-H. Lo,D. A. Buchanan,Yuan Taur,W. Wang
摘要
Quantum-mechanical modeling of electron tunneling current from the quantized inversion layer of ultra-thin-oxide (<40 /spl Aring/) nMOSFET's is presented, together with experimental verification. An accurate determination of the physical oxide thickness is achieved by fitting experimentally measured capacitance-versus-voltage curves to quantum-mechanically simulated capacitance-versus-voltage results. The lifetimes of quasibound states and the direct tunneling current are calculated using a transverse-resonant method. These results are used to project an oxide scaling limit of 20 /spl Aring/ before the chip standby power becomes excessive due to tunneling currents,.
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