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Deterministic photon source interfaced with a programmable silicon-nitride integrated circuit

Physics

Deterministic photon source interfaced with a programmable silicon-nitride integrated circuit

Y. Wang, C. F. D. Faurby, et al.

This research showcases an innovative quantum photonic platform that blends a high-quality quantum dot single-photon source with a low-loss silicon nitride (SiN) photonic integrated circuit. The team, including Ying Wang, Carlos F. D. Faurby, and others, demonstrates its remarkable programmability across multiphoton applications, paving the way for advanced photonic quantum hardware.

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Playback language: English
Abstract
This paper details the development and characterization of a quantum photonic platform integrating a high-quality quantum dot single-photon source with a low-loss silicon nitride (SiN) photonic integrated circuit (PIC). The platform's programmability is demonstrated through various multiphoton applications, including bosonic suppression laws and photonic entanglement generation. The results highlight a promising approach for scaling up photonic quantum hardware.
Publisher
npj Quantum Information
Published On
Sep 25, 2023
Authors
Ying Wang, Carlos F. D. Faurby, Fabian Ruf, Patrik I. Sund, Kasper Nielsen, Nicolas Volet, Martijn J. R. Heck, Nikolai Bart, Andreas D. Wieck, Arne Ludwig, Leonardo Midolo, Stefano Paesani, Peter Lodahl
Tags
quantum photonic platform
single-photon source
silicon nitride
multiphoton applications
entanglement generation
quantum hardware
bosonic suppression
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