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Photocurrent spectroscopy of InAs/GaAs self-assembled quantum dots: observation of a permanent dipole moment
Authors:P. W. Fry   I. E. Itskevich   D. J. Mowbray   M. S. Skolnick   J. A. Barker   E. P. O'Reilly   L. R. Wilson   P. A. Maksym   M. Hopkinson  M. Al-Khafaji   J. P. R. David   A. G. Cullis   G. Hill  J. C. Clark
Abstract:The nature of the confined electronic states in InAs/GaAs self-assembled quantum dots is studied using photocurrent spectroscopy measured as a function of applied electric field. A field asymmetry of the quantum confined Stark effect is observed, consistent with the dots possessing a permanent dipole moment. The sign of this dipole indicates that for zero field the hole wave function lies above that of the electron, in disagreement with the predictions of all recent calculations. Comparison with a theoretical model demonstrates that the experimentally determined alignment of the electron and hole can only be explained if the dots contain a non-zero and non-uniform Ga content.
Keywords:Quantum dots   Optical spectroscopy   Electronic structure
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