Microcavity enhanced single photon emission from two-dimensional WSe2

Atomically flat semiconducting materials such as monolayer WSe\(_2\) hold great promise for novel optoelectronic devices. Recently, quantum light emission has been observed from bound excitons in exfoliated WSe\(_2\). As part of developing optoelectronic devices, the control of the radiative propert...

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Veröffentlicht in:arXiv.org 2018-07
Hauptverfasser: Flatten, L C, Weng, L, Branny, A, Johnson, S, Dolan, P R, Trichet, A A P, Gerardot, B D, Smith, J M
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Sprache:eng
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Zusammenfassung:Atomically flat semiconducting materials such as monolayer WSe\(_2\) hold great promise for novel optoelectronic devices. Recently, quantum light emission has been observed from bound excitons in exfoliated WSe\(_2\). As part of developing optoelectronic devices, the control of the radiative properties of such emitters is an important step. Here we report the coupling of a bound exciton in WSe\(_2\) to open microcavities. We use a range of radii of curvature in the plano-concave cavity geometry with mode volumes in the \(\lambda^3\) regime, giving Purcell factors of up to 8 while increasing the photon flux five-fold. Additionally we determine the quantum efficiency of the single photon emitter to be \(\eta = 0.46 \pm 0.03\). Our findings pave the way to cavity-enhanced monolayer based single photon sources for a wide range of applications in nanophotonics and quantum information technologies.
ISSN:2331-8422
DOI:10.48550/arxiv.1807.02778