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Progress in the control of the light-matter interaction in semiconductors

机译:半导体中光物质相互作用的控制进展

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We discuss the influence of the relative dimensionalities of electron and photon states on the interaction of light and matter in semiconductors. A variety of effects are to be expected, such as the Purcell effect or the strong light-matter coupling, based on the nature of the electronic excitations (independent electron or excitons) and on the nature (planar or 3D microcavities and photonic crystals) and damping of the photonic states. Applications in the field of light-emitting diodes (LEDs) are detailed. (C) 2005 Elsevier Ltd. All rights reserved.
机译:我们讨论了电子和光子状态的相对维数对半导体中光与物质相互作用的影响。根据电子激发的性质(独立的电子或激子)和性质(平面或3D微腔和光子晶体),预计会产生多种影响,例如珀塞尔效应或强光-质耦合。光子态的阻尼。详细介绍了发光二极管(LED)领域的应用。 (C)2005 Elsevier Ltd.保留所有权利。

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