Skip to content Skip to navigation
University of Warwick
  • Study
  • |
  • Research
  • |
  • Business
  • |
  • Alumni
  • |
  • News
  • |
  • About

University of Warwick
Publications service & WRAP

Highlight your research

  • WRAP
    • Home
    • Search WRAP
    • Browse by Warwick Author
    • Browse WRAP by Year
    • Browse WRAP by Subject
    • Browse WRAP by Department
    • Browse WRAP by Funder
    • Browse Theses by Department
  • Publications Service
    • Home
    • Search Publications Service
    • Browse by Warwick Author
    • Browse Publications service by Year
    • Browse Publications service by Subject
    • Browse Publications service by Department
    • Browse Publications service by Funder
  • Help & Advice
University of Warwick

The Library

  • Login
  • Admin

Coherent states in ring resonators outperform any quantum probe single-pass absorption estimation strategy

Tools
- Tools
+ Tools

Belsley, Alexandre, Allen, Euan J., Datta, Animesh and Matthews, Jonathan C. F. (2022) Coherent states in ring resonators outperform any quantum probe single-pass absorption estimation strategy. In: Quantum 2.0 Conference and Exhibition, Boston, MA, United States, 13–16 Jun 2022 ISBN 9781957171111. doi:10.1364/QUANTUM.2022.QTu4C.2

Research output not available from this repository.

Request-a-Copy directly from author or use local Library Get it For Me service.

Official URL: http://dx.doi.org/10.1364/QUANTUM.2022.QTu4C.2

Request Changes to record.

Abstract

By leveraging interference and resonance enhancement effects, we find all-pass ring resonators with coherent-state probes can estimate absorption more precisely than any quantum probe single-pass strategy, including those using squeezed or Fock states.

Item Type: Conference Item (Paper)
Divisions: Faculty of Science, Engineering and Medicine > Science > Physics
Series Name: Technical Digest Series
Publisher: Optica Publishing Group
ISBN: 9781957171111
Book Title: Quantum 2.0 Conference and Exhibition
Official Date: 2022
Dates:
DateEvent
2022Published
Article Number: QTu4C.2.
DOI: 10.1364/QUANTUM.2022.QTu4C.2
Status: Peer Reviewed
Publication Status: Published
Access rights to Published version: Restricted or Subscription Access
Conference Paper Type: Paper
Title of Event: Quantum 2.0 Conference and Exhibition
Type of Event: Conference
Location of Event: Boston, MA, United States
Date(s) of Event: 13–16 Jun 2022

Request changes or add full text files to a record

Repository staff actions (login required)

View Item View Item
twitter

Email us: wrap@warwick.ac.uk
Contact Details
About Us