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20222024
most citedPhotonic indistinguishability of the tin-vacancy center in nanostructured diamond

6 citations · 13 across the 6 of their papers we have counts for

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quant-ph2024

A scalable cavity-based spin-photon interface in a photonic integrated circuit

Kevin C. Chen, Ian Christen, Hamza Raniwala +10

A central challenge in quantum networking is transferring quantum states between different physical modalities, such as between flying photonic qubits and stationary quantum memori…

quant-ph20232 cited

Nanoelectromechanical control of spin-photon interfaces in a hybrid quantum system on chip

Genevieve Clark, Hamza Raniwala, Matthew Koppa +11

Atom-like defects or color centers (CC's) in nanostructured diamond are a leading platform for optically linked quantum technologies, with recent advances including memory-enhanced…

quant-ph20232 cited

Hyperfine Spectroscopy of Isotopically Engineered Group-IV Color Centers in Diamond

Isaac B. W. Harris, Cathryn P. Michaels, Kevin C. Chen +16

A quantum register coupled to a spin-photon interface is a key component in quantum communication and information processing. Group-IV color centers in diamond (SiV, GeV, and SnV)…

quant-ph20233 cited

A diamond nanophotonic interface with an optically accessible deterministic electronuclear spin register

Ryan A. Parker, Jesús Arjona Martínez, Kevin C. Chen +9

A contemporary challenge for the scalability of quantum networks is developing quantum nodes with simultaneous high photonic efficiency and long-lived qubits. Here, we present a fi…

quant-ph2023

A fully packaged multi-channel cryogenic module for optical quantum memories

David J. Starling, Katia Shtyrkova, Ian Christen +13

Realizing a quantum network will require long-lived quantum memories with optical interfaces incorporated into a scalable architecture. Color centers quantum emitters in diamond ha…

quant-ph20226 cited

Photonic indistinguishability of the tin-vacancy center in nanostructured diamond

Jesús Arjona Martínez, Ryan A. Parker, Kevin C. Chen +12

Tin-vacancy centers in diamond are promising spin-photon interfaces owing to their high quantum-efficiency, large Debye-Waller factor, and compatibility with photonic nanostructuri…