Surpassing the conventional heisenberg limit using classical resources
We report the experimental estimation of the Kerr coefficient of an optical fiber. Using bright classical fields and shot-noise-limited detection, we show the precision scaling of 1/N3/2 in a room-temperature, all-optical system. © 2013 The Optical Society.
Main Authors: | , , , , , , , , |
---|---|
Format: | Conference item |
Published: |
IEEE
2013
|
_version_ | 1797073143349641216 |
---|---|
author | Jin, X Lebrat, M Zhang, L Lee, K Bartley, T Barbieri, M Nunn, J Datta, A Walmsley, I |
author_facet | Jin, X Lebrat, M Zhang, L Lee, K Bartley, T Barbieri, M Nunn, J Datta, A Walmsley, I |
author_sort | Jin, X |
collection | OXFORD |
description | We report the experimental estimation of the Kerr coefficient of an optical fiber. Using bright classical fields and shot-noise-limited detection, we show the precision scaling of 1/N3/2 in a room-temperature, all-optical system. © 2013 The Optical Society. |
first_indexed | 2024-03-06T23:17:49Z |
format | Conference item |
id | oxford-uuid:67b85dd1-3dac-4e6f-973e-56c941a8af43 |
institution | University of Oxford |
last_indexed | 2024-03-06T23:17:49Z |
publishDate | 2013 |
publisher | IEEE |
record_format | dspace |
spelling | oxford-uuid:67b85dd1-3dac-4e6f-973e-56c941a8af432022-03-26T18:40:11ZSurpassing the conventional heisenberg limit using classical resourcesConference itemhttp://purl.org/coar/resource_type/c_5794uuid:67b85dd1-3dac-4e6f-973e-56c941a8af43Symplectic Elements at OxfordIEEE2013Jin, XLebrat, MZhang, LLee, KBartley, TBarbieri, MNunn, JDatta, AWalmsley, IWe report the experimental estimation of the Kerr coefficient of an optical fiber. Using bright classical fields and shot-noise-limited detection, we show the precision scaling of 1/N3/2 in a room-temperature, all-optical system. © 2013 The Optical Society. |
spellingShingle | Jin, X Lebrat, M Zhang, L Lee, K Bartley, T Barbieri, M Nunn, J Datta, A Walmsley, I Surpassing the conventional heisenberg limit using classical resources |
title | Surpassing the conventional heisenberg limit using classical resources |
title_full | Surpassing the conventional heisenberg limit using classical resources |
title_fullStr | Surpassing the conventional heisenberg limit using classical resources |
title_full_unstemmed | Surpassing the conventional heisenberg limit using classical resources |
title_short | Surpassing the conventional heisenberg limit using classical resources |
title_sort | surpassing the conventional heisenberg limit using classical resources |
work_keys_str_mv | AT jinx surpassingtheconventionalheisenberglimitusingclassicalresources AT lebratm surpassingtheconventionalheisenberglimitusingclassicalresources AT zhangl surpassingtheconventionalheisenberglimitusingclassicalresources AT leek surpassingtheconventionalheisenberglimitusingclassicalresources AT bartleyt surpassingtheconventionalheisenberglimitusingclassicalresources AT barbierim surpassingtheconventionalheisenberglimitusingclassicalresources AT nunnj surpassingtheconventionalheisenberglimitusingclassicalresources AT dattaa surpassingtheconventionalheisenberglimitusingclassicalresources AT walmsleyi surpassingtheconventionalheisenberglimitusingclassicalresources |