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Tuning of Intersubband Transition in a Quantum Ring by External Electric Field

机译:外部电场调整量子环中的运动器过渡

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In this paper, energy states of electrons in a semiconductor quantum ring have been calculated in the presence of an electric field perpendicular to the plane of the ring. The external field alters the potential energy profile of the structure and thus controls the electron energy-eigenvalues inside the ring. The energy subbands are computed taking n-type GaAs quantum ring as an example. The effect of electric field is to lower the energy states of the electrons linearly at low fields and non-linearly at high fields. The energy for inter-subband transition between two lowest quantum states in the direction of the field increases with increase in electric field, which shows the possibility of fine wavelength tuning using electric fields.
机译:在本文中,已经在垂直于环的平面的电场存在下计算半导体量子环中的能量状态。外部领域改变了结构的潜在能量轮廓,从而控制着环内的电子能量 - 特征值。以N型GaAs量子环计算能量子带作为示例。电场的效果是在低场线性下线性地线性的能量状态,并且在高领域非线性地。在场方向上的两个最低量子状态之间的子带间转换的能量随着电场的增加而增加,这表示了使用电场的细波长调谐的可能性。

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