首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Electrically Driven Quantum Dot Micropillar Light Sources
【24h】

Electrically Driven Quantum Dot Micropillar Light Sources

机译:电动量子点微柱光源

获取原文
获取原文并翻译 | 示例
           

摘要

We report on light sources based on electrically pumped quantum dot (QD) micropillar cavities. The low-mode-volume high-quality microstructures feature pronounced cavity quantum electrodynamics (cQED) effects that are exploited for the realization of efficient single-photon sources and low-threshold microlasers. The compact and electrically driven devices are of special interest for applications in the field of quantum communication. In particular, operated as electrically triggered single-photon sources, the QD micropillars can act as building blocks for quantum key distribution and quantum repeaters. On the other hand, the electrically pumped microlasers with in-plane emission via whispering gallery modes or emission normal to the sample''s surface are predestinated for integrated light sources in future photonic networks. The devices are based on doped high-quality factor GaAs/AlAs microcavity structures with InGaAs QDs in the active layer. A lateral injection scheme leaves the upper facet of the micropillars free of any absorbing metal and allows for efficient light output under electrical pumping of low-mode-volume micropillars with diameters between 1 and 20 μm. Due to cQED effects, triggered single-photon emission with high photon extraction efficiency up to 62% and a low multiphoton emission probability (g $^{(2)}$(0) = 0.16) are realized for moderate-quality (Q ) factor samples. The efficient coupling of spontaneous emission into the lasing mode in high- Q micropillars results in ultralow laser threshold currents of less than 10 μA at cryogenic temperatures. Our paper demonstrates the high potential of electrically driven QD micropillars to act as integrated light sources in future communication systems.
机译:我们报告基于电泵浦量子点(QD)微柱腔的光源。低模量高质量微结构具有明显的腔量子电动力学(cQED)效应,可用于实现有效的单光子源和低阈值微激光器。对于量子通信领域中的应用,紧凑且电驱动的设备特别感兴趣。特别是,QD微型柱作为电触发的单光子源,可以充当量子密钥分配和量子中继器的构建块。另一方面,通过耳语画廊模式进行面内发射或垂直于样品表面进行发射的电泵微激光器注定要在未来的光子网络中用作集成光源。该器件基于在有源层中具有InGaAs QD的掺杂高质量因子GaAs / AlAs微腔结构。横向注入方案使微柱的上端面没有任何吸收金属,并允许在电泵浦直径为1至20μm的低模量微柱的情况下有效地输出光。由于cQED的影响,实现了中等质量(Q)的触发单光子发射,具有高达62%的高光子提取效率和低的多光子发射概率(g $ ^ {(2)} $(0)= 0.16)。因素样本。在高Q微柱中,自发发射与激光模式的有效耦合导致在低温下低于10µA的超低激光阈值电流。我们的论文证明了电动QD微型柱作为未来通信系统中集成光源的巨大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号