量子隧道
异质结
散射
有效质量(弹簧-质量系统)
凝聚态物理
材料科学
电流(流体)
基质(化学分析)
物理
量子力学
热力学
复合材料
作者
Nathaniel Hernandez,M. Cahay,Jonathan O’Mara,Jonathan Ludwick,Dennis E. Walker,Tyson C. Back,Harris J. Hall
摘要
A scattering matrix technique is used to calculate the longitudinal and transverse energy dependence of the transmission probability through various heterostructures using both the BenDaniel–Duke (BD) and the lesser known Zhu–Kroemer (ZK) boundary conditions to take into account the spatial dependence of the effective mass. We first illustrate the large difference in the transmission probabilities calculated using both boundary conditions for the simple problems of tunneling through a potential step, a single rectangular barrier, and a resonant tunneling device. Then, we present numerical calculations of the external electric field dependence of the field emission (FE) current from a n-doped GaAs semiconductor/vacuum interface using both boundary conditions, showing that the BD boundary conditions underestimate the FE current for large values of the applied external electrostatic field. A comparison of calculated FE characteristics with FE data may be a way to determine the appropriate boundary conditions to solve tunneling problems through heterostructures with spatially varying effective mass.
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