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Room-temperature solid state quantum emitters in the telecom range

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arxiv 1708.04523 v1 pith:XCAC2FOQ submitted 2017-08-02 quant-ph cs.ETphysics.app-ph

classification quant-phcs.ETphysics.app-ph
keywords quantumtelecomemittersspestriggeredhighoperatingphoton
verification ladder T0 review T1 audit T2 compute T3 formal
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On demand single photon emitters (SPEs) play a key role across a broad range of quantum technologies, including quantum computation, quantum simulation, quantum metrology and quantum communications. In quantum networks and quantum key distribution protocols, where photons are employed as flying qubits, telecom wavelength operation is preferred due to the reduced fibre loss. However, despite the tremendous efforts to develop various triggered SPE platforms, a robust source of triggered SPEs operating at room temperature and the telecom wavelength is still missing. Here we report a triggered, optically stable, room temperature solid state SPE operating at telecom wavelengths. The emitters exhibit high photon purity (~ 5% multiphoton events) and a record-high brightness of ~ 1.5 MHz. The emission is attributed to localized defects in a gallium nitride (GaN) crystal. The high performance SPEs embedded in a technologically mature semiconductor are promising for on-chip quantum simulators and practical quantum communication technologies.

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