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The effect of transverse wave vector and magnetic fields on resonant tunneling times in double-barrier structures

  • Hongmei Wang*
  • , Yafei Zhang
  • , Huaizhe Xu
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The effect of transverse wave vector and magnetic fields on resonant tunneling times in double-barrier structures, which is significant but has been frequently omitted in previous theoretical methods, has been reported in this paper. The analytical expressions of the longitudinal energies of quasibound levels (LEQBL) and the lifetimes of quasibound levels (LQBL) in symmetrical double-barrier (SDB) structures have been derived as a function of transverse wave vector and longitudinal magnetic fields perpendicular to interfaces. Based on our derived analytical expressions, the LEQBL and LQBL dependence upon transverse wave vector and longitudinal magnetic fields has been explored numerically for a SDB structure. Model calculations show that the LEQBL decrease monotonically and the LQBL shorten with increasing transverse wave vector, and each original LEQBL splits to a series of sub-LEQBL which shift nearly linearly toward the well bottom and the lifetimes of quasibound level series (LQBLS) shorten with increasing Landau-level indices and magnetic fields.

源语言英语
文章编号023712
期刊Journal of Applied Physics
101
2
DOI
出版状态已出版 - 2007

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