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General theory for the interference of two-photon and one-photon processes in semiconductor heterostructures

机译:半导体异质结构中两光子和一光子过程干涉的一般理论

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We develop a general theory for the dynamics of multi-photon processes in semiconductor heterostructures. The resulting effective multi-band Bloch equations describe the dynamics of electrons in the reduced set of bands between which the optical pulses induce quasi-resonant transitions. The model is specialized to the case of interfering one- and two-photon transitions across the band gap. The withdrawn bands are included as intermediate states for an effective interaction that is quadratic in the electromagnetic fields. The benefit of this perturbative approach is to lead to equations of motion for slowly varying quantities only, in the spirit of the rotating wave approximation. Coulomb interaction and relaxation can also easily be included. Finally, a general expression for the time dependent polarization current that is consistent with the approximations involved by the effective multi-band Bloch equations is derived. (c) 2004 Elsevier Inc. All rights reserved.
机译:我们为半导体异质结构中的多光子过程的动力学发展了一个通用理论。所产生的有效多频带Bloch方程描述了在减少的一组频带中的电子动力学,在这些频带之间,光脉冲引发了准谐振跃迁。该模型专门用于在带隙上干扰单光子和双光子跃迁的情况。撤回的带被包括为中间状态,以实现电磁场中二次方的有效相互作用。这种摄动方法的好处是,根据旋转波近似的精神,可以得出仅针对缓慢变化的量的运动方程。库仑相互作用和松弛也可以容易地包括在内。最后,推导了与时间相关的极化电流的一般表达式,该表达式与有效的多频带Bloch方程所涉及的近似值一致。 (c)2004 Elsevier Inc.保留所有权利。

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