Nanocavity enhanced photon coherence of solid-state quantum emitters operating up to 30 K
收藏DataCite Commons2023-09-27 更新2025-04-16 收录
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https://figshare.shef.ac.uk/articles/dataset/Towards_Generating_Indistinguishable_Photons_from_Solid-State_Quantum_Emitters_at_Elevated_Temperatures/22794932
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Data from the manuscript "<i>Nanocavity enhanced photon coherence of solid-state quantum emitters operating up to 30 K</i>".Abstract:Solid-state emitters such as epitaxial quantum dots have emerged as a leading platform for efficient, on-demand sources of indistinguishable photons, a key resource for many optical quantum technologies. To maximise performance, these sources normally operate at liquid helium temperatures (~4 K), introducing significant size, weight and power requirements that can be impractical for proposed applications. Here we experimentally resolve the two distinct temperature-dependent phonon interactions that degrade indistinguishability, allowing us to demonstrate that coupling to a photonic nanocavity can greatly improve photon coherence at elevated temperatures compatible with compact cryocoolers. We derive a polaron model that fully captures the temperature-dependent influence of phonons observed in our experiments, providing predictive power to further increase the indistinguishability and operating temperature of future devices through optimised cavity parameters.
提供机构:
The University of Sheffield
创建时间:
2023-05-10



