Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Juan M. Cornejo
  • Johannes Brombacher
  • Julia A. Coenders
  • Moritz Von Boehn
  • Teresa Meiners
  • Malte Niemann
  • Stefan Ulmer
  • Christian Ospelkaus

Externe Organisationen

  • Ulmer Fundamental Symmetries Laboratory
  • Physikalisch-Technische Bundesanstalt (PTB)
  • Heinrich-Heine-Universität Düsseldorf
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Aufsatznummer033226
Seitenumfang6
FachzeitschriftPhysical Review Research
Jahrgang5
Ausgabenummer3
PublikationsstatusVeröffentlicht - 28 Sept. 2023

Abstract

We demonstrate optical sideband spectroscopy of a single Be+9 ion in a cryogenic 5 tesla Penning trap using two-photon stimulated-Raman transitions between the two Zeeman sublevels of the 1s22s ground state manifold. By applying two complementary coupling schemes, we accurately measure Raman resonances with and without contributions from motional sidebands. From the latter we obtain an axial sideband spectrum with an effective mode temperature of (3.1±0.4) mK. These results are a key step for quantum logic operations in Penning traps, applicable to high-precision matter-antimatter comparison tests in the baryonic sector of the standard model.

ASJC Scopus Sachgebiete

Zitieren

Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap. / Cornejo, Juan M.; Brombacher, Johannes; Coenders, Julia A. et al.
in: Physical Review Research, Jahrgang 5, Nr. 3, 033226, 28.09.2023.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Cornejo, JM, Brombacher, J, Coenders, JA, Von Boehn, M, Meiners, T, Niemann, M, Ulmer, S & Ospelkaus, C 2023, 'Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap', Physical Review Research, Jg. 5, Nr. 3, 033226. https://doi.org/10.48550/arXiv.2308.09362, https://doi.org/10.1103/PhysRevResearch.5.033226
Cornejo, J. M., Brombacher, J., Coenders, J. A., Von Boehn, M., Meiners, T., Niemann, M., Ulmer, S., & Ospelkaus, C. (2023). Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap. Physical Review Research, 5(3), Artikel 033226. https://doi.org/10.48550/arXiv.2308.09362, https://doi.org/10.1103/PhysRevResearch.5.033226
Cornejo JM, Brombacher J, Coenders JA, Von Boehn M, Meiners T, Niemann M et al. Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap. Physical Review Research. 2023 Sep 28;5(3):033226. doi: 10.48550/arXiv.2308.09362, 10.1103/PhysRevResearch.5.033226
Cornejo, Juan M. ; Brombacher, Johannes ; Coenders, Julia A. et al. / Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap. in: Physical Review Research. 2023 ; Jahrgang 5, Nr. 3.
Download
@article{43c9e54f3fe947e682dd5a98201557f3,
title = "Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap",
abstract = "We demonstrate optical sideband spectroscopy of a single Be+9 ion in a cryogenic 5 tesla Penning trap using two-photon stimulated-Raman transitions between the two Zeeman sublevels of the 1s22s ground state manifold. By applying two complementary coupling schemes, we accurately measure Raman resonances with and without contributions from motional sidebands. From the latter we obtain an axial sideband spectrum with an effective mode temperature of (3.1±0.4) mK. These results are a key step for quantum logic operations in Penning traps, applicable to high-precision matter-antimatter comparison tests in the baryonic sector of the standard model.",
author = "Cornejo, {Juan M.} and Johannes Brombacher and Coenders, {Julia A.} and {Von Boehn}, Moritz and Teresa Meiners and Malte Niemann and Stefan Ulmer and Christian Ospelkaus",
note = "Funding Information: We are grateful for discussions with J. J. Bollinger, R. C. Thompson, and P. O. Schmidt. This work was supported by PTB, LUH, and DFG through the clusters of excellence QUEST and QuantumFrontiers as well as through the Collaborative Research Center SFB1227 (DQ-mat Project-ID 274200144) and European Research Council StG “QLEDS.” We also acknowledge financial support from the RIKEN Pioneering Project Funding and the MPG/RIKEN/PTB Center for Time, Constants and Fundamental Symmetries. ",
year = "2023",
month = sep,
day = "28",
doi = "10.48550/arXiv.2308.09362",
language = "English",
volume = "5",
number = "3",

}

Download

TY - JOUR

T1 - Optical stimulated-Raman sideband spectroscopy of a single ^9Be^+ ion in a Penning trap

AU - Cornejo, Juan M.

AU - Brombacher, Johannes

AU - Coenders, Julia A.

AU - Von Boehn, Moritz

AU - Meiners, Teresa

AU - Niemann, Malte

AU - Ulmer, Stefan

AU - Ospelkaus, Christian

N1 - Funding Information: We are grateful for discussions with J. J. Bollinger, R. C. Thompson, and P. O. Schmidt. This work was supported by PTB, LUH, and DFG through the clusters of excellence QUEST and QuantumFrontiers as well as through the Collaborative Research Center SFB1227 (DQ-mat Project-ID 274200144) and European Research Council StG “QLEDS.” We also acknowledge financial support from the RIKEN Pioneering Project Funding and the MPG/RIKEN/PTB Center for Time, Constants and Fundamental Symmetries.

PY - 2023/9/28

Y1 - 2023/9/28

N2 - We demonstrate optical sideband spectroscopy of a single Be+9 ion in a cryogenic 5 tesla Penning trap using two-photon stimulated-Raman transitions between the two Zeeman sublevels of the 1s22s ground state manifold. By applying two complementary coupling schemes, we accurately measure Raman resonances with and without contributions from motional sidebands. From the latter we obtain an axial sideband spectrum with an effective mode temperature of (3.1±0.4) mK. These results are a key step for quantum logic operations in Penning traps, applicable to high-precision matter-antimatter comparison tests in the baryonic sector of the standard model.

AB - We demonstrate optical sideband spectroscopy of a single Be+9 ion in a cryogenic 5 tesla Penning trap using two-photon stimulated-Raman transitions between the two Zeeman sublevels of the 1s22s ground state manifold. By applying two complementary coupling schemes, we accurately measure Raman resonances with and without contributions from motional sidebands. From the latter we obtain an axial sideband spectrum with an effective mode temperature of (3.1±0.4) mK. These results are a key step for quantum logic operations in Penning traps, applicable to high-precision matter-antimatter comparison tests in the baryonic sector of the standard model.

UR - http://www.scopus.com/inward/record.url?scp=85175004372&partnerID=8YFLogxK

U2 - 10.48550/arXiv.2308.09362

DO - 10.48550/arXiv.2308.09362

M3 - Article

AN - SCOPUS:85175004372

VL - 5

JO - Physical Review Research

JF - Physical Review Research

SN - 2643-1564

IS - 3

M1 - 033226

ER -

Von denselben Autoren