Increased instantaneous bandwidth of Rydberg atom electrometry with an optical frequency comb probe

Fuente: arXiv
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Bibliographic Details
Main Authors: Artusio-Glimpse, Alexandra B., Long, David A., Bresler, Sean M., Prajapati, Nikunjkumar, Shylla, Dangka, Rotunno, Andrew P., Simons, Matthew T., Berweger, Samuel, Schlossberger, Noah, LeBrun, Thomas W., Holloway, Christopher L.
Format: Preprint
Published: 2024
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author Artusio-Glimpse, Alexandra B.
Long, David A.
Bresler, Sean M.
Prajapati, Nikunjkumar
Shylla, Dangka
Rotunno, Andrew P.
Simons, Matthew T.
Berweger, Samuel
Schlossberger, Noah
LeBrun, Thomas W.
Holloway, Christopher L.
author_facet Artusio-Glimpse, Alexandra B.
Long, David A.
Bresler, Sean M.
Prajapati, Nikunjkumar
Shylla, Dangka
Rotunno, Andrew P.
Simons, Matthew T.
Berweger, Samuel
Schlossberger, Noah
LeBrun, Thomas W.
Holloway, Christopher L.
contents We show that the use of an optical frequency comb probe leads to dramatically improved bandwidth (as high as 12+/-1 MHz) for the detection of modulated radio frequencies in Rydberg atom-based electrometry.
format Preprint
id arxiv_https___arxiv_org_abs_2402_17942
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Increased instantaneous bandwidth of Rydberg atom electrometry with an optical frequency comb probe
Artusio-Glimpse, Alexandra B.
Long, David A.
Bresler, Sean M.
Prajapati, Nikunjkumar
Shylla, Dangka
Rotunno, Andrew P.
Simons, Matthew T.
Berweger, Samuel
Schlossberger, Noah
LeBrun, Thomas W.
Holloway, Christopher L.
Atomic Physics
We show that the use of an optical frequency comb probe leads to dramatically improved bandwidth (as high as 12+/-1 MHz) for the detection of modulated radio frequencies in Rydberg atom-based electrometry.
title Increased instantaneous bandwidth of Rydberg atom electrometry with an optical frequency comb probe
topic Atomic Physics
url https://arxiv.org/abs/2402.17942