| Literature DB >> 33562831 |
Paweł Wyborski1, Anna Musiał1, Paweł Mrowiński1, Paweł Podemski1, Vasilij Baumann2, Piotr Wroński2, Fauzia Jabeen2,3, Sven Höfling2,4, Grzegorz Sęk1.
Abstract
We investigated emission properties of photonic structures with InAs/InGaAlAs/InP quantum dashes grown by molecular beam epitaxy on a distributed Bragg reflector. In high-spatial-resolution photoluminescence experiment, well-resolved sharp spectral lines are observed and single-photon emission is detected in the third telecommunication window characterized by very low multiphoton events probabilities. The photoluminescence spectra measured on simple photonic structures in the form of cylindrical mesas reveal significant intensity enhancement by a factor of 4 when compared to a planar sample. These results are supported by simulations of the electromagnetic field distribution, which show emission extraction efficiencies even above 18% for optimized designs. When combined with relatively simple and undemanding fabrication approach, it makes this kind of structures competitive with the existing solutions in that spectral range and prospective in the context of efficient and practical single-photon sources for fiber-based quantum networks applications.Entities:
Keywords: III–V quantum dot; extraction efficiency; photonic structure; single-photon emitter; telecommunication spectral range
Year: 2021 PMID: 33562831 PMCID: PMC7915660 DOI: 10.3390/ma14040759
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623