Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Integrated Quantum Memories at 1.3 K with Tin-Vacancy Centers and Photonic Circuits

Not Accessible

Your library or personal account may give you access

Abstract

We present an efficient microwave and optical interface for quantum memories at 1.3 K based on tin-vacancy color centers in diamond and scalable integrated photonics.

© 2023 The Author(s)

PDF Article
More Like This
Scalable Photonic Integration of Long-Lived Tin-Vacancy Memories at 1.3 K

Ian Christen, Hamza Raniwala, Marco Colangelo, Kevin Chen, Lorenzo De Santis Linsen Li, Yixuan Song, Carlos Errando-Herranz, Isaac Harris, Eric Bersin Madison Sutula, Karl Berggren, Matt Trusheim, Dirk Englund, P. Ben Dixon, Xingyu Zhang, Katia Shtyrkova Dave Kharas, Ryan Murphy, and Scott Hamilton
QM2A.4 Quantum 2.0 (QUANTUM) 2022

Cavity-based Diamond Spin-Photon Interface in Photonic Integrated Circuits

Kevin C. Chen, Ian Christen, Hamza Raniwala, Marco Colangelo, Karl Berggren, Dirk Englund, P. Ben Dixon, Xingyu Zhang, David Starling, Katia Shtyrkova, David Kharas, Ryan Murphy, and Scott Hamilton
JTu2A.49 CLEO: Applications and Technology (CLEO:A&T) 2023

Tin-vacancy centres in diamond for an integrated and efficient spin-photon interface

M. Pasini, H. K. C. Beukers, C. Waas, N. Codreanu, J. M. Brevoord, L. De Santis, C. F. Primavera, S. K. Niese, K. T. Dankers, and R. Hanson
QM2A.3 Quantum 2.0 (QUANTUM) 2022

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.