Nonlocal electrodynamics of weakly confined excitons in semiconductor nanostructures

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Abstract

The third order nonlinear optical response of semiconductor quantum dots is calculated in the limit of weak exciton confinement We treat exactly the nonlocal photon-exciton interaction using Green function techniques, without invoking the long wavelength approximation. This procedure provides a unified treatment of systems with arbitrary size compared with the optical wavelength. Geometric confinement gives rise to quantized polariton modes with a finite radiative lifetime. The variation of optical nonlinearities with size, and the role of local field effects are analyzed. © 1994 American Institute of Physics.

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Belleguie, L., & Mukamel, S. (1994). Nonlocal electrodynamics of weakly confined excitons in semiconductor nanostructures. The Journal of Chemical Physics, 101(11), 9719–9735. https://doi.org/10.1063/1.467938

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