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半导体微腔中激子的光学效应
Optical effects of excitons in semiconductor microcavities
【摘要】 文章基于Fabry-P啨rot半导体微腔,阐述了新型元激发——激子极化激元的基本概念和微观描述,讨论了其在光学放大器、光学开关和单光子源方面的潜在应用,概述了对其实现Bose-Einstein凝聚的实验研究,最后对将来的发展做了一个简单的展望.
【Abstract】 Recent experimental and theoretical studies on the physics of semiconductor microcavities are reviewed. First, based on the Fabry-Pérot microcavity, the basic concepts and microscopic descriptions of exciton polaritons are introduced; then the potential applications of semiconductor microcavities to optical amplifiers, optical switches and single-photon sources are discussed; afterwards, the experimental realization of Bose-Einstein condensation is surveyed; finally, prospects for future developments are briefly presented.
【关键词】 半导体微腔;
激子极化激元;
光学放大器;
光学开关;
单光子源;
Bose-Einstein凝聚;
【Key words】 semiconductor microcavity; exciton polariton; optical amplifier; optical switch; single-photon source; Bose-Einstein condensation;
【Key words】 semiconductor microcavity; exciton polariton; optical amplifier; optical switch; single-photon source; Bose-Einstein condensation;
【基金】 国家自然科学基金(批准号:10674058,60876065);国家重大基础研究发展计划(批准号:2006CB921803,2009CB929504)资助项目
- 【文献出处】 物理 ,Physics , 编辑部邮箱 ,2009年08期
- 【分类号】O472
- 【被引频次】6
- 【下载频次】471