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T-matrix analysis of biexcitonic correlations in the nonlinear optical response of semiconductor quantum wells

机译:半导体量子阱非线性光学响应中双激子相关性的T矩阵分析

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摘要

A detailed numerical analysis of exciton-exciton interactions in semiconductor quantum wells is presented. The theory is based on the dynamics-controlled truncation formalism and evaluated for the case of resonant excitation of 1s-heavy-hole excitons. It is formulated in terms of standard concepts of scattering theory, such as the forward-scattering amplitude (or T-matrix). The numerical diagonalization of the exciton-exciton interaction matrix in the 1s-approximation yields the excitonic T-matrix. We discuss the role of the direct and exchange interaction in the effective two-exciton Hamiltonian, which determines the T-matrix, evaluated within the 1s-subspace, and also analyze the effects of the excitonic wave function overlap matrix. Inclusion of the latter is shown to effectively prevent the 1s-approximation from making the Hamiltonian non-hermitian, but a critical discussion shows that other artefacts may be avoided by not including the overlap matrix. We also present a detailed analysis of the correspondence between the excitonic T-matrix in the 1s-approximation and the well-known T-matrix governing two-particle interactions in two dimensional systems via short-range potentials.
机译:给出了半导体量子阱中激子-激子相互作用的详细数值分析。该理论基于动力学控制的截断形式,并针对1s重孔激子的共振激发进行了评估。它是根据散射理论的标准概念制定的,例如前向散射幅度(或T矩阵)。激子-激子相互作用矩阵在1s近似中的数值对角化产生了激子T矩阵。我们讨论了直接和交换相互作用在有效的两激子哈密顿量中的作用,该哈密顿量确定了T矩阵,并在1s子空间中进行了评估,并分析了激子波函数重叠矩阵的影响。包含后者可以有效防止1s近似使哈密顿量成为非埃尔米特量,但严格的讨论表明,可以通过不包括重叠矩阵来避免其他伪像。我们还提出了对1s近似中的激子T矩阵和控制二维系统通过短距离电势的两粒子相互作用的著名T矩阵之间的对应关系的详细分析。

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