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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Bright Single-Photon Emission From a Quantum Dot in a Circular Bragg Grating Microcavity
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Bright Single-Photon Emission From a Quantum Dot in a Circular Bragg Grating Microcavity

机译:圆形布拉格光栅微腔中量子点的明亮单光子发射

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Bright single-photon emission from single quantum dots (QDs) in suspended circular Bragg grating microcavities is demonstrated. This geometry has been designed to achieve efficient $(>!50%)$ single-photon extraction into a near-Gaussian-shaped far-field pattern, modest $(approx 10 times)$ Purcell enhancement of the radiative rate, and a spectral bandwidth of a few nanometers. Measurements of fabricated devices show progress toward these goals, with collection efficiencies as high as $approx!{10}%$ demonstrated with moderate spectral bandwidth and rate enhancement. Photon correlation measurements are performed under above-bandgap excitation (pump wavelength = 780 to 820 nm) and confirm the single-photon character of the collected emission. While the measured sources are all antibunched and dominantly composed of single photons, the multiphoton probability varies significantly. Devices exhibiting tradeoffs among collection efficiency, Purcell enhancement, and multiphoton probability are explored and the results are interpreted with the help of finite-difference time-domain simulations. Below-bandgap excitation resonant with higher states of the QD and/or cavity (pump wavelength = 860 to 900 nm) shows a near-complete suppression of multiphoton events and may circumvent some of the aforementioned tradeoffs.
机译:从悬浮的圆形布拉格光栅微腔中的单个量子点(QD)发出明亮的单光子发射。设计这种几何形状的目的是实现高效地将(-> 50%)$单光子提取到近高斯形的远场图形中,适度地(大约10倍)$赛尔增强辐射速率和光谱几纳米的带宽。预制设备的测量显示了朝着这些目标的进步,在中等频谱带宽和速率增强的情况下,采集效率高达约{10}%$。在带隙以上激发(泵浦波长= 780至820 nm)下执行光子相关测量,并确认收集到的发射的单光子特性。尽管所测量的光源全都是反聚束的,并且主要由单光子组成,但多光子的概率差异很大。探索了在收集效率,赛尔增强和多光子概率之间权衡取舍的设备,并借助时域有限差分模拟解释了结果。在QD和/或腔的较高状态(泵浦波长= 860至900 nm)下的带隙以下激发谐振显示了对多光子事件的几乎完全抑制,并可能绕过了一些上述折衷。

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