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具有时间相关能量重整化的二能级系统中的拉比振荡:量子阱中的子带间跃迁

Rabi flopping in a two-level system with a time-dependent energy renormalization: intersubband transitions in quantum wells.

作者信息

Batista Adriano A, Citrin D S

机构信息

School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0250, USA.

出版信息

Phys Rev Lett. 2004 Mar 26;92(12):127404. doi: 10.1103/PhysRevLett.92.127404. Epub 2004 Mar 25.

Abstract

We obtain pulse-driven Rabi oscillations guided by a generalization of the rotating-wave approximation to include, in the optical-Bloch equations, two-level systems with a time-varying transition energy. We achieve this by using chirped pulses with the central frequency given by the time-varying transition energy. Using this approach, we predict Rabi oscillations in intersubband transitions in a two-subband n-type modulation-doped quantum well by taking into account the time-dependent intersubband energy-gap renormalization due to depolarization-shift effects. We obtain Rabi oscillations for jpi (j=0,1,2, ) pulses in the presence of dephasing.

摘要

我们通过将旋转波近似进行推广以在光学布洛赫方程中纳入具有随时间变化跃迁能量的二能级系统,从而获得脉冲驱动的拉比振荡。我们通过使用中心频率由随时间变化的跃迁能量给出的啁啾脉冲来实现这一点。利用这种方法,我们通过考虑由于退极化位移效应导致的随时间变化的子带间能隙重整化,预测了双子带n型调制掺杂量子阱中的子带间跃迁拉比振荡。我们在存在退相的情况下获得了jπ(j = 0,1,2,...)脉冲的拉比振荡。

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