Barbiero Andrea, Huwer Jan, Skiba-Szymanska Joanna, Müller Tina, Stevenson R Mark, Shields Andrew J
Opt Express. 2022 Mar 28;30(7):10919-10928. doi: 10.1364/OE.452328.
The development of efficient sources of single photons and entangled photon pairs emitting in the low-loss wavelength region around 1550 nm is crucial for long-distance quantum communication. Moreover, direct fiber coupling and electrical carrier injection are highly desirable for deployment in compact and user-friendly systems integrated with the existing fiber infrastructure. Here we present a detailed design study of circular Bragg gratings fabricated in InP slabs and operating in the telecom C-band. These devices enable the simultaneous enhancement of the X and XX spectral lines, with collection efficiency in numerical aperture 0.65 close to 90% for the wavelength range 1520 - 1580 nm and Purcell factor up to 15. We also investigate the coupling into a single mode fiber, which exceeds 70% in UHNA4. Finally, we propose a modified device design directly compatible with electrical carrier injection, reporting Purcell factors up to 20 and collection efficiency in numerical aperture 0.65 close to 70% for the whole telecom C-band.
开发在1550 nm左右低损耗波长区域发射的高效单光子源和纠缠光子对,对于长距离量子通信至关重要。此外,直接光纤耦合和电载流子注入对于部署在与现有光纤基础设施集成的紧凑且用户友好的系统中非常理想。在此,我们展示了在InP平板中制造并在电信C波段工作的圆形布拉格光栅的详细设计研究。这些器件能够同时增强X和XX光谱线,对于1520 - 1580 nm波长范围,数值孔径为0.65时的收集效率接近90%,珀塞尔因子高达15。我们还研究了与单模光纤的耦合,在UHNA4中超过70%。最后,我们提出了一种直接与电载流子注入兼容的改进器件设计,报告了整个电信C波段高达20的珀塞尔因子和数值孔径为0.65时接近70%的收集效率。