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Quantum Light Generation Based on GaN Microring Toward Fully On-Chip Source

PHYSICAL REVIEW LETTERS(2024)

Univ Elect Sci & Technol China

Cited 11|Views70
Abstract
An integrated quantum light source is increasingly desirable in large-scale quantum information processing. Despite recent remarkable advances, a new material platform is constantly being explored for the fully on-chip integration of quantum light generation, active and passive manipulation, and detection. Here, for the first time, we demonstrate a gallium nitride (GaN) microring based quantum light generation in the telecom C-band, which has potential toward the monolithic integration of quantum light source. In our demonstration, the GaN microring has a free spectral range of 330 GHz and a near-zero anomalous dispersion region of over 100 nm. The generation of energy -time entangled photon pair is demonstrated with a typical raw two-photon interference visibility of 95.5 +/- 6.5%, which is further configured to generate a heralded single photon with a typical heralded second-order autocorrelation g(H)((2)) (0) of 0.045 +/- 0.001. Our results pave the way for developing a chip-scale quantum photonic circuit.
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On-chip Interconnects
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