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

Towards a Quantum Memory: Effects of Hyperfine Structure on Atomic Frequency Combs in Pr:YSO

Not Accessible

Your library or personal account may give you access

Abstract

We experimentally prepare 120 MHz-bandwidth atomic frequency combs. High-quality comb formation – and thus high-efficiency retrieval of stored pulses – only occurs for certain tooth spacings, due to the hyperfine energy-level spacings.

© 2020 The Author(s)

PDF Article  |   Presentation Video
More Like This
Towards a Quantum Memory: Effects of Hyperfine Structure on Atomic Frequency Combs in Pr:YSO

Aditya N. Sharma, Martin Ritter, Robinjeet Singh, Elizabeth A. Goldschmidt, and Alan L. Migdall
QTu8B.16 Quantum 2.0 (QUANTUM) 2020

Predicted Transmission in a Pr:YSO Quantum Memory Experiment

Zachary H. Levine
FM5A.4 Frontiers in Optics (FiO) 2020

Predicted Transmission in a Pr:YSO Quantum Memory Experiment

Zachary H. Levine
QW6A.13 Quantum 2.0 (QUANTUM) 2020

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
Towards a Quantum Memory: Effects of Hyperfine Structure on Atomic Frequency Combs in Pr:YSO

Aditya N. Sharma, Martin Ritter, Robinjeet Singh, Elizabeth A. Goldschmidt, and Alan L. Migdall
QTu8B.16 Quantum 2.0 (QUANTUM) 2020

Predicted Transmission in a Pr:YSO Quantum Memory Experiment

Zachary H. Levine
FM5A.4 Frontiers in Optics (FiO) 2020

Predicted Transmission in a Pr:YSO Quantum Memory Experiment

Zachary H. Levine
QW6A.13 Quantum 2.0 (QUANTUM) 2020

Demonstration of a Model For Cavity-Enhanced Atomic Frequency Comb Quantum Memory

Shahrzad Taherizadegan, Jacob H. Davidson, Sourabh Kumar, Roohollah Ghobadi, Daniel Oblak, and Christoph Simon
QM4B.6 Quantum 2.0 (QUANTUM) 2022

Remarkable Improvement of Atomic-Frequency-Comb Memory Efficiency by Comb Transfer Method in 167Er3+:Y2SiO5 under Zero Magnetic Field

Shoichiro Yasui, Masaya Hiraishi, Atsushi Ishizawa, Hiroo Omi, Tomohiro Inaba, Xuejun Xu, Reina Kaji, Satoru Adachi, and Takehiko Tawara
FTh5L.5 CLEO: QELS_Fundamental Science (CLEO:FS) 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.