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

Silicon Nitride Bus-Coupled Spiral-Ring Resonator for Dual-Mode Locking Temperature Stabilization

Not Accessible

Your library or personal account may give you access

Abstract

A Si3N4 bus-coupled spiral-ring dual-mode resonator reference cavity, with high extinction ratios for both TE and TM modes, is demonstrated for temperature stabilization. The temperature is stabilized within ± 60 µK variation over 16 hours.

© 2021 The Author(s)

PDF Article  |   Presentation Video
More Like This
Laser Frequency Drift Stabilization using an Integrated Dual-Mode Locking Si3N4 Waveguide Reference Cavity

Qiancheng Zhao, Mark W. Harrington, Andrei Isichenko, Grant M. Brodnik, Kaikai Liu, Ryan O. Behunin, Peter T. Rakich, Chad W. Hoyt, Chad Fertig, Scott B. Papp, and Daniel J. Blumenthal
STh2B.7 CLEO: Science and Innovations (CLEO:S&I) 2021

A sub-10 µK, dual-mode temperature stabilized microresonator

Jinkang Lim, Anatoliy Savchenkov, Yoon Soo Jang, Andrey Matsko, and Chee Wei Wong
SF2H.6 CLEO: Science and Innovations (CLEO:S&I) 2019

A Method for Increasing Thermal Stability of Short-Living Solitons in Silicon Nitride Microresonators

D. Grassani, F. A. Sabattoli, H. El Dirani, L. Youssef, C. Petit-Etienne, S. Kerdiles, E. Pargon, M. Liscidini, C. Sciancalepore, D. Bajoni, and M. Galli
SW2H.2 CLEO: Science and Innovations (CLEO:S&I) 2021

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
Laser Frequency Drift Stabilization using an Integrated Dual-Mode Locking Si3N4 Waveguide Reference Cavity

Qiancheng Zhao, Mark W. Harrington, Andrei Isichenko, Grant M. Brodnik, Kaikai Liu, Ryan O. Behunin, Peter T. Rakich, Chad W. Hoyt, Chad Fertig, Scott B. Papp, and Daniel J. Blumenthal
STh2B.7 CLEO: Science and Innovations (CLEO:S&I) 2021

A sub-10 µK, dual-mode temperature stabilized microresonator

Jinkang Lim, Anatoliy Savchenkov, Yoon Soo Jang, Andrey Matsko, and Chee Wei Wong
SF2H.6 CLEO: Science and Innovations (CLEO:S&I) 2019

A Method for Increasing Thermal Stability of Short-Living Solitons in Silicon Nitride Microresonators

D. Grassani, F. A. Sabattoli, H. El Dirani, L. Youssef, C. Petit-Etienne, S. Kerdiles, E. Pargon, M. Liscidini, C. Sciancalepore, D. Bajoni, and M. Galli
SW2H.2 CLEO: Science and Innovations (CLEO:S&I) 2021

Realization of coupled-resonator-induced transparency in silicon-on-insulator based ring-bus-ring geometry

S. Darmawan, Landobasa Y. M. Tobing, L. Tjahjana, Y. Zhang, and D. H. Zhang
C586 Conference on Lasers and Electro-Optics/Pacific Rim (CLEO/PR) 2011

Tunable Squeezing Using Coupled Ring Resonators on a Silicon Nitride Chip

Avik Dutt, Steven Miller, Kevin Luke, Alexander L. Gaeta, Paulo Nussenzveig, and Michal Lipson
FW4B.4 CLEO: QELS_Fundamental Science (CLEO:FS) 2015

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.