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Intersublevel transitions in self-assembled quantum dots

机译:自组装量子点的子间跃迁

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摘要

Intersublevel transitions in semiconductor quantum dots are transitions of a charge carrier between quantum dot confined states. In InAs/GaAs self-assembled quantum dots, optically active intersublevel transitions occur in the mid-infrared spectral range. These transitions can provide a new insight on the physics of semiconductor quantum dots and offer new opportunities to develop mid-infrared devices. A key feature characterizing intersublevel transitions is the coupling of the confined carriers to phonons. We show that the effect of the strong coupling regime for the electron-optical phonon interaction and the formation of mixed electron-phonon quasi-particles called polarons drastically affect and control the dynamical properties of quantum dots. The engineering of quantum dot relaxation rates through phonon coupling opens the route to the realization of new devices like mid-infrared polaron lasers. We finally show that the measurement of intersublevel absorption is not limited to quantum dot ensembles and that the intersublevel ultrasmall absorption of a single quantum dot can be measured with a nanometer scale resolution by using phonon emission as a signature of the absorption. To cite this article: P Boucaud et al., C R. Physique 9 (2008). (C) 2008 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:半导体量子点中的子级间跃迁是量子点受限状态之间的载流子跃迁。在InAs / GaAs自组装量子点中,光学活性的亚能级跃迁发生在中红外光谱范围内。这些转变可以提供有关半导体量子点物理的新见解,并为开发中红外设备提供新的机会。表征层间过渡的关键特征是受限载流子与声子的耦合。我们表明,强耦合机制对电子-光子声子相互作用的影响以及称为极化子的混合电子-声子准粒子的形成极大地影响和控制了量子点的动力学特性。通过声子耦合实现的量子点弛豫率工程为中红外极化子激光器等新设备的实现开辟了道路。我们最终表明,子级间吸收的测量不仅限于量子点集合,而且单个声点的子级间超小吸收可以通过使用声子发射作为吸收的特征以纳米尺度分辨率进行测量。引用本文:P Boucaud等人,C R. Physique 9(2008)。 (C)2008科学研究院。由Elsevier Masson SAS发布。版权所有。

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