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一种在室温附近工作的砷化镓极化激元发光二极管。

A GaAs polariton light-emitting diode operating near room temperature.

作者信息

Tsintzos S I, Pelekanos N T, Konstantinidis G, Hatzopoulos Z, Savvidis P G

机构信息

Department of Materials Science & Technology, University of Crete, PO Box 2208, 71003 Heraklion, Crete, Greece.

出版信息

Nature. 2008 May 15;453(7193):372-5. doi: 10.1038/nature06979.

Abstract

The increasing ability to control light-matter interactions at the nanometre scale has improved the performance of semiconductor lasers in the past decade. The ultimate optimization is realized in semiconductor microcavities, in which strong coupling between quantum-well excitons and cavity photons gives rise to hybrid half-light/half-matter polariton quasiparticles. The unique properties of polaritons-such as stimulated scattering, parametric amplification, lasing, condensation and superfluidity-are believed to provide the basis for a new generation of polariton emitters and semiconductor lasers. Until now, polariton lasing and nonlinearities have only been demonstrated in optical experiments, which have shown the potential to reduce lasing thresholds by two orders of magnitude compared to conventional semiconductor lasers. Here we report an experimental realization of an electrically pumped semiconductor polariton light-emitting device, which emits directly from polariton states at a temperature of 235 K. Polariton electroluminescence data reveal characteristic anticrossing between exciton and cavity modes, a clear signature of the strong coupling regime. These findings represent a substantial step towards the realization of ultra-efficient polaritonic devices with unprecedented characteristics.

摘要

在过去十年中,对纳米尺度光与物质相互作用的控制能力不断增强,提升了半导体激光器的性能。在半导体微腔中实现了最终优化,其中量子阱激子与腔光子之间的强耦合产生了混合的半光/半物质极化激元准粒子。极化激元的独特性质,如受激散射、参量放大、激光发射、凝聚和超流性,被认为是新一代极化激元发射器和半导体激光器的基础。到目前为止,极化激元激光发射和非线性仅在光学实验中得到证实,与传统半导体激光器相比,这些实验显示出将激光阈值降低两个数量级的潜力。在此,我们报告了一种电泵浦半导体极化激元发光器件的实验实现,该器件在235K的温度下直接从极化激元态发射。极化激元电致发光数据揭示了激子与腔模之间的特征性反交叉,这是强耦合 regime的明确标志。这些发现代表着朝着实现具有前所未有的特性的超高效极化激元器件迈出了重要一步。

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