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微腔中单量子点共振荧光的后选择不可分辨光子。

Post-selected indistinguishable photons from the resonance fluorescence of a single quantum dot in a microcavity.

机构信息

Institut für Halbleiteroptik und Funktionelle Grenzflächen, Universität Stuttgart, Allmandring 3, 70569 Stuttgart, Germany.

出版信息

Phys Rev Lett. 2009 Oct 16;103(16):167402. doi: 10.1103/PhysRevLett.103.167402.

Abstract

Applying continuous-wave pure resonant s-shell optical excitation of individual quantum dots in a high-quality micropillar cavity, we demonstrate the generation of post-selected indistinguishable photons in resonance fluorescence. Close to ideal visibility contrast of 90% is verified by polarization-dependent Hong-Ou-Mandel two-photon interference measurements. Furthermore, a strictly resonant continuous-wave excitation together with controlling the spontaneous emission lifetime of the single quantum dots via tunable emitter-mode coupling (Purcell) is proven as a versatile scheme to generate close to Fourier transform-limited (T2/(2T1)=0.91) single photons even at 80% of the emission saturation level.

摘要

通过对高质量微柱腔中单个量子点的连续波纯共振 s 壳层光激发,我们在共振荧光中演示了后选择的不可分辨光子的产生。通过偏振相关的 Hong-Ou-Mandel 双光子干涉测量,验证了接近理想的 90%可见度对比度。此外,通过可调谐发射器模式耦合(Purcell)来控制单个量子点的自发发射寿命,严格的共振连续波激发被证明是一种通用方案,即使在发射饱和度的 80%水平下,也可以产生接近傅里叶变换极限(T2/(2T1)=0.91)的单光子。

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