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量子点高β微腔的发射:从自发发射到激光发射的转变以及超辐射发射体耦合的影响。

Emission from quantum-dot high-β microcavities: transition from spontaneous emission to lasing and the effects of superradiant emitter coupling.

作者信息

Kreinberg Sören, Chow Weng W, Wolters Janik, Schneider Christian, Gies Christopher, Jahnke Frank, Höfling Sven, Kamp Martin, Reitzenstein Stephan

机构信息

Institut für Festkörperphysik, Technische Universität Berlin, Berlin 10623, Germany.

Sandia National Laboratories, Albuquerque, NM 87185-1086, USA.

出版信息

Light Sci Appl. 2017 Aug 25;6(8):e17030. doi: 10.1038/lsa.2017.30. eCollection 2017 Aug.

Abstract

Measured and calculated results are presented for the emission properties of a new class of emitters operating in the cavity quantum electrodynamics regime. The structures are based on high-finesse GaAs/AlAs micropillar cavities, each with an active medium consisting of a layer of InGaAs quantum dots (QDs) and the distinguishing feature of having a substantial fraction of spontaneous emission channeled into one cavity mode (high β-factor). This paper demonstrates that the usual criterion for lasing with a conventional (low β-factor) cavity, that is, a sharp non-linearity in the input-output curve accompanied by noticeable linewidth narrowing, has to be reinforced by the equal-time second-order photon autocorrelation function to confirm lasing. The paper also shows that the equal-time second-order photon autocorrelation function is useful for recognizing superradiance, a manifestation of the correlations possible in high-β microcavities operating with QDs. In terms of consolidating the collected data and identifying the physics underlying laser action, both theory and experiment suggest a sole dependence on intracavity photon number. Evidence for this assertion comes from all our measured and calculated data on emission coherence and fluctuation, for devices ranging from light-emitting diodes (LEDs) and cavity-enhanced LEDs to lasers, lying on the same two curves: one for linewidth narrowing versus intracavity photon number and the other for (0) versus intracavity photon number.

摘要

给出了在腔量子电动力学 regime 中运行的一类新型发射器的发射特性的测量和计算结果。这些结构基于高精细度的 GaAs/AlAs 微柱腔,每个微柱腔都有一个由一层 InGaAs 量子点(QDs)组成的有源介质,其显著特征是有很大一部分自发发射被引导到一个腔模中(高β因子)。本文表明,对于传统(低β因子)腔的激光发射的通常标准,即输入 - 输出曲线中的尖锐非线性伴随着明显的线宽变窄,必须通过等时二阶光子自相关函数来加强以确认激光发射。本文还表明,等时二阶光子自相关函数对于识别超辐射是有用的,超辐射是在与量子点一起运行的高β微腔中可能出现的相关性的一种表现。在整合收集到的数据并确定激光作用背后的物理原理方面,理论和实验都表明仅依赖于腔内光子数。这一断言的证据来自我们所有关于发射相干性和涨落的测量和计算数据,对于从发光二极管(LED)和腔增强型 LED 到激光器等各种器件,都落在相同的两条曲线上:一条是线宽变窄与腔内光子数的关系曲线,另一条是(0)与腔内光子数的关系曲线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c42c/6062317/13bf01b8d880/lsa201730f1.jpg

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