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Design optimization for bright electrically-driven quantum dot single-photon sources emitting in telecom O-band

作者:S. A. Blokhin, M. A. Bobrov, N. A. Maleev, Jan N. Donges, Leon Bremer, A. A. Blokhin, А. П. Васильев, A. G. Kuzmenkov, E. S. Kolodeznyi, V. A. Shchukin, N. N. Ledentsov, Stephan Reitzenstein, V. M. Ustinov · 发表于:Optics Express · 年份:2021 · DOI:10.1364/oe.415979 · 被引用次数:16 · 研究领域:Photonic and Optical Devices、Semiconductor Lasers and Optical Devices、Optical Network Technologies

A combination of advanced light engineering concepts enables a substantial improvement in photon extraction efficiency of micro-cavity-based single-photon sources in the telecom O-band at ∼1.3 µm. We employ a broadband bottom distributed Bragg reflector (DBR) and a top DBR formed in a dielectric micropillar with an additional circular Bragg grating in the lateral plane. This device design includes a doped layer in pin-configuration to allow for electric carrier injection. It provides broadband (∼8-10 nm) emission enhancement with an overall photon-extraction efficiency of ∼83% into the upper hemisphere and photon-extraction efficiency of ∼79% within numerical aperture NA=0.7. The efficiency of photon coupling to a single-mode fiber reaches 11% for SMF28 fiber (with NA=0.12), exceeds 22% for 980HP fiber (with NA=0.2) and reaches ∼40% for HNA fiber (with NA=0.42) as demonstrated by 3D finite-difference time-domain modeling.