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Exciton polarization, fine structure splitting and quantum dot asymmetry under uniaxial stress

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arxiv 1012.2612 v2 pith:LIOH6GU3 submitted 2010-12-13 cond-mat.mtrl-sci quant-ph

Exciton polarization, fine structure splitting and quantum dot asymmetry under uniaxial stress

classification cond-mat.mtrl-sci quant-ph
keywords stressexcitonpolarizationunderangleasymmetrydotsfine
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We derive a general relation between the fine structure splitting (FSS) and the exciton polarization angle of self-assembled quantum dots (QDs) under uniaxial stress. We show that the FSS lower bound under external stress can be predicted by the exciton polarization angle and FSS under zero stress. The critical stress can also be determined by monitoring the change in exciton polarization angle. We confirm the theory by performing atomistic pseudopotential calculations for the InAs/GaAs QDs. The work provides a deep insight into the dots asymmetry and their optical properties, and a useful guide in selecting QDs with smallest FSS which are crucial in entangled photon sources applications.

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