Bright Purcell Enhanced Single-Photon Source in the Telecom O-Band Based on a Quantum Dot in a Circular Bragg Grating.

Kolatschek, Sascha; Nawrath, Cornelius; Bauer, Stephanie; Huang, Jiasheng; Fischer, Julius; Sittig, Robert; Jetter, Michael; Portalupi, Simone Luca et al. · Nano Lett · 2021

basic_science · Level V

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Abstract

The combination of semiconductor quantum dots with photonic cavities is a promising way to realize nonclassical light sources with state-of-the-art performances regarding brightness, indistinguishability, and repetition rate. Here we demonstrate the coupling of InGaAs/GaAs QDs emitting in the telecom O-band to a circular Bragg grating cavity. We demonstrate a broadband geometric extraction efficiency enhancement by investigating two emission lines under above-band excitation, inside and detuned from the cavity mode, respectively. In the first case, a Purcell enhancement of 4 is attained. For the latter case, an end-to-end brightness of 1.4% with a brightness at the first lens of 23% is achieved. Using p-shell pumping, a combination of high count rate with pure single-photon emission (g<sup>(2)</sup>(0) = 0.01 in saturation) is achieved. Finally, a good single-photon purity (g<sup>(2)</sup>(0) = 0.13) together with a high detector count rate of 191 kcps is demonstrated for a temperature of up to 77 K.