2025/12/02 by Roman Shugayev · 1 voice
Materials Science · Physics and Astronomy · Engineering · #Diamond and Carbon-based Materials Research #Photonic Crystals and Applications #Photonic and Optical Devices
paper · doi:10.20935/acadquant8025
openalex publication_date 2025/12/02 · openalex created_date 2025/12/02 · openalex updated_date 2026/07/31
Superradiance offers an efficient approach for coupling discrete quantum emitters via collective fluorescence. In this work, we suggest a method for the controlled coupling and synchronization of distant integrated photonic emitters using superradiance. Our theoretical modeling and analysis using electromagnetic and Master Equation methods for a case of nanodiamond/SiN heterogenous photonic platform confirms efficient superradiant coupling of distant emitters and a good degree of spurious emission isolation. This approach can offer a path to the scalable generation of multipartite photonic states, such as NOON states, and can enable efficient cluster state generation and one-way quantum computing approaches.