Preliminary characterization of a surface electrode Paul trap for frequency metrology

Fuente: arXiv
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Main Authors: Madunic, Josipa, Groult, Lucas, Achi, Bachir, Lauprêtre, Thomas, Boudrias, Alan, Roset, Pierre, Soumann, Valérie, Kersalé, Yann, Hafiz, Moustafa Abdel, Lacroûte, Clément
Format: Preprint
Published: 2024
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_version_ 1866910715565047808
author Madunic, Josipa
Groult, Lucas
Achi, Bachir
Lauprêtre, Thomas
Boudrias, Alan
Roset, Pierre
Soumann, Valérie
Kersalé, Yann
Hafiz, Moustafa Abdel
Lacroûte, Clément
author_facet Madunic, Josipa
Groult, Lucas
Achi, Bachir
Lauprêtre, Thomas
Boudrias, Alan
Roset, Pierre
Soumann, Valérie
Kersalé, Yann
Hafiz, Moustafa Abdel
Lacroûte, Clément
contents We are developing a single-ion optical clock based on a surface-electrode (SE) trap that we will operate with $^{171}$Yb$^+$ ions on the electric quadrupole transition at 435.5 nm. We present heating rate measurements performed with a prototype SE trap. We also introduce a new, micro-fabricated SE trapping chip using silicon on insulator technology. Electric tests were performed under ultra-high vacuum using a testing chip, including breakdown voltages measurements and flashover detection. We present suitable trapping parameters for this chip, as well as a road-map for improving its design.
format Preprint
id arxiv_https___arxiv_org_abs_2410_06639
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Preliminary characterization of a surface electrode Paul trap for frequency metrology
Madunic, Josipa
Groult, Lucas
Achi, Bachir
Lauprêtre, Thomas
Boudrias, Alan
Roset, Pierre
Soumann, Valérie
Kersalé, Yann
Hafiz, Moustafa Abdel
Lacroûte, Clément
Atomic Physics
Instrumentation and Detectors
Quantum Physics
We are developing a single-ion optical clock based on a surface-electrode (SE) trap that we will operate with $^{171}$Yb$^+$ ions on the electric quadrupole transition at 435.5 nm. We present heating rate measurements performed with a prototype SE trap. We also introduce a new, micro-fabricated SE trapping chip using silicon on insulator technology. Electric tests were performed under ultra-high vacuum using a testing chip, including breakdown voltages measurements and flashover detection. We present suitable trapping parameters for this chip, as well as a road-map for improving its design.
title Preliminary characterization of a surface electrode Paul trap for frequency metrology
topic Atomic Physics
Instrumentation and Detectors
Quantum Physics
url https://arxiv.org/abs/2410.06639