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

Piezoelectric control of spin quantum memories in a cryogenic programmable photonic circuit platform

Not Accessible

Your library or personal account may give you access

Abstract

We demonstrate piezoelectric strain control of diamond tin vacancy defects in cryogenic photonic integrated circuits fabricated in a 200 mm CMOS platform, enabling frequency tuning and control bandwidth above 20 GHz and 2 GHz, respectively.

© 2022 The Author(s)

PDF Article  |   Presentation Video
More Like This
Scalable Control of Spin Quantum Memories in a Photonic Integrated Circuit

D. Andrew Golter, Genevieve Clark, Tareq El Dandachi, Stefan Krastanov, Matthew Zimmermann, Andrew Greenspon, Noel Wan, Hamza Raniwala, Kevin Chen, Linsen Li, Andrew Leenheer, Mark Dong, Gerald Gilbert, Matt Eichenfield, and Dirk R. Englund
FTh5L.3 CLEO: QELS_Fundamental Science (CLEO:FS) 2022

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

Genevieve Clark, Hamza Raniwala, Matthew Koppa, Kevin Chen, Andrew Leenheer, Matthew Zimmerman, Mark Dong, Linsen Li, Y. Henry Wen, Daniel Dominguez, Matthew Trusheim, Gerald Gilbert, Matt Eichenfield, and Dirk R. Englund
FM6B.3 Frontiers in Optics (FiO) 2023

Scalable quantum information processing architecture using a programmable array of spin-photon interfaces

Linsen Li, Lorenzo De Santis, Isaac Harris, Kevin Chen, Yixuan Song, Ian Christen, Matthew Trusheim, Carlos Errando Herranz, Ruonan Han, and Dirk Englund
FF4J.1 CLEO: QELS_Fundamental Science (CLEO:FS) 2022

Presentation Video

Presentation video access is available to:

  1. Optica Publishing Group subscribers
  2. Technical meeting attendees
  3. Optica members who wish to use one of their free downloads. Please download the article first. After downloading, please refresh this page.

Contact your librarian or system administrator
or
Log in to access Optica Member Subscription or free downloads


More Like This
Scalable Control of Spin Quantum Memories in a Photonic Integrated Circuit

D. Andrew Golter, Genevieve Clark, Tareq El Dandachi, Stefan Krastanov, Matthew Zimmermann, Andrew Greenspon, Noel Wan, Hamza Raniwala, Kevin Chen, Linsen Li, Andrew Leenheer, Mark Dong, Gerald Gilbert, Matt Eichenfield, and Dirk R. Englund
FTh5L.3 CLEO: QELS_Fundamental Science (CLEO:FS) 2022

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

Genevieve Clark, Hamza Raniwala, Matthew Koppa, Kevin Chen, Andrew Leenheer, Matthew Zimmerman, Mark Dong, Linsen Li, Y. Henry Wen, Daniel Dominguez, Matthew Trusheim, Gerald Gilbert, Matt Eichenfield, and Dirk R. Englund
FM6B.3 Frontiers in Optics (FiO) 2023

Scalable quantum information processing architecture using a programmable array of spin-photon interfaces

Linsen Li, Lorenzo De Santis, Isaac Harris, Kevin Chen, Yixuan Song, Ian Christen, Matthew Trusheim, Carlos Errando Herranz, Ruonan Han, and Dirk Englund
FF4J.1 CLEO: QELS_Fundamental Science (CLEO:FS) 2022

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

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.