Faraday-Shielded dc Stark-Shift-Free Optical Lattice Clock

Type: Article

Publication Date: 2018-05-02

Citations: 15

DOI: https://doi.org/10.1103/physrevlett.120.183201

Abstract

We demonstrate the absence of a dc Stark shift in an ytterbium optical lattice clock. Stray electric fields are suppressed through the introduction of an in-vacuum Faraday shield. Still, the effectiveness of the shielding must be experimentally assessed. Such diagnostics are accomplished by applying high voltage to six electrodes, which are grounded in normal operation to form part of the Faraday shield. Our measurements place a constraint on the dc Stark shift at the 10^{-20} level, in units of the clock frequency. Moreover, we discuss a potential source of error in strategies to precisely measure or cancel nonzero dc Stark shifts, attributed to field gradients coupled with the finite spatial extent of the lattice-trapped atoms. With this consideration, we find that Faraday shielding, complemented with experimental validation, provides both a practically appealing and effective solution to the problem of dc Stark shifts in optical lattice clocks.

Locations

  • Physical Review Letters - View - PDF
  • arXiv (Cornell University) - View - PDF
  • PubMed - View
  • DataCite API - View

Similar Works

Action Title Year Authors
+ A terahertz vibrational molecular clock with systematic uncertainty at the $10^{-14}$ level 2022 K. H. Leung
B. Iritani
E. Tiberi
I. Majewska
M. Borkowski
R. Moszynski
T. Zelevinsky
+ PDF Chat Observation and cancellation of a perturbing dc stark shift in strontium optical lattice clocks 2012 Jérôme Lodewyck
M. Zawada
L. Lorini
Mikhail Gurov
P. Lemonde
+ PDF Chat Magnetic Field-Induced Spectroscopy of Forbidden Optical Transitions with Application to Lattice-Based Optical Atomic Clocks 2006 А. В. Тайченачев
V. I. Yudin
C. W. Oates
Chad Hoyt
Zeb W. Barber
L. Hollberg
+ PDF Chat High-Accuracy Measurement of Atomic Polarizability in an Optical Lattice Clock 2012 Jeff Sherman
N. Lemke
N. Hinkley
Marco Pizzocaro
Richard W. Fox
Andrew D. Ludlow
C. W. Oates
+ PDF Chat Atomic Clock with<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mn>1</mml:mn><mml:mo>×</mml:mo><mml:msup><mml:mrow><mml:mn>10</mml:mn></mml:mrow><mml:mrow><mml:mo>−</mml:mo><mml:mn>18</mml:mn></mml:mrow></mml:msup></mml:mrow></mml:math>Room-Temperature Blackbody Stark Uncertainty 2014 K. Beloy
N. Hinkley
N. B. Phillips
Jeff Sherman
M. Schioppo
John H. Lehman
A. Feldman
Leonard M. Hanssen
C. W. Oates
Andrew D. Ludlow
+ PDF Chat A clock with $8\times10^{-19}$ systematic uncertainty 2024 Alexander Aeppli
Kyungtae Kim
William Warfield
M. S. Safronova
Jun Ye
+ Characterization and suppression of background light shifts in an optical lattice clock 2021 Robert Fasano
Yun-Jhih Chen
William F. McGrew
Wesley Brand
Richard W. Fox
Andrew D. Ludlow
+ PDF Chat Characterization and Suppression of Background Light Shifts in an Optical Lattice Clock 2021 Robert Fasano
Yun-Jhih Chen
William F. McGrew
Wesley Brand
Richard W. Fox
Andrew D. Ludlow
+ A pyramid MOT with integrated optical cavities as a cold atom platform for an optical lattice clock 2019 William Bowden
Richard Hobson
Ian R. Hill
Alvise Vianello
M. Schioppo
Alissa Silva
H. S. Margolis
P. E. G. Baird
P. Gill
+ A pyramid MOT with integrated optical cavities as a cold atom platform for an optical lattice clock 2019 William Bowden
Richard Hobson
Ian R. Hill
Alvise Vianello
M. Schioppo
Alissa Silva
H. S. Margolis
P. E. G. Baird
P. Gill
+ PDF Chat Lattice Light Shift Evaluations In a Dual-Ensemble Yb Optical Lattice Clock 2024 Tobias Bothwell
B. D. Hunt
Jacob L. Siegel
Youssef Hassan
Tanner Grogan
Takumi Kobayashi
Kurt Gibble
S. G. Porsev
M. S. Safronova
Roger C. Brown
+ PDF Chat Frequency Shifts in an Optical Lattice Clock Due to Magnetic-Dipole and Electric-Quadrupole Transitions 2008 А. В. Тайченачев
V. I. Yudin
V D Ovsiannikov
V. G. Pal’chikov
C. W. Oates
+ PDF Chat Hyperpolarizability and Operational Magic Wavelength in an Optical Lattice Clock 2017 Roger C. Brown
N. B. Phillips
K. Beloy
William F. McGrew
M. Schioppo
Robert Fasano
Gianmaria Milani
X. Zhang
N. Hinkley
H. Leopardi
+ Probe field ellipticity-induced shift in an atomic clock 2022 V. I. Yudin
A. V. Taichenachev
O. N. Prudnikov
M. Yu. Basalaev
V. G. Pal’chikov
M. von Boehn
T. E. Mehlstäubler
S. N. Bagayev
+ PDF Chat Terahertz Vibrational Molecular Clock with Systematic Uncertainty at the <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:msup><mml:mn>10</mml:mn><mml:mrow><mml:mo>−</mml:mo><mml:mn>14</mml:mn></mml:mrow></mml:msup></mml:math> Level 2023 Kon H. Leung
Brandon Iritani
Emily Tiberi
I. Majewska
Mateusz Borkowski
Robert Moszyński
Tanya Zelevinsky
+ Tackling the blackbody shift in a strontium optical lattice clock 2010 Thomas Middelmann
Christian Lisdat
Stephan Falke
Joseph S. R. Vellore Winfred
F. Riehle
U. Sterr
+ Tackling the blackbody shift in a strontium optical lattice clock 2010 Thomas Middelmann
Christian Lisdat
Stephan Falke
J. S. Raaj Vellore Winfred
F. Riehle
U. Sterr
+ PDF Chat Subrecoil Clock-Transition Laser Cooling Enabling Shallow Optical Lattice Clocks 2022 X. Zhang
K. Beloy
Youssef S. Hassan
William F. McGrew
Chun-Chia Chen
Jacob L. Siegel
Tanner Grogan
Andrew D. Ludlow
+ PDF Chat Hamiltonian engineering of spin-orbit–coupled fermions in a Wannier-Stark optical lattice clock 2022 Alexander Aeppli
Anjun Chu
Tobias Bothwell
Colin Kennedy
Dhruv Kedar
Peiru He
Ana María Rey
Jun Ye
+ Cavity-enhanced non-destructive detection of atoms for an optical lattice clock 2019 Richard Hobson
William Bowden
Alvise Vianello
Ian R. Hill
P. Gill

Works That Cite This (10)

Action Title Year Authors
+ PDF Chat Atomic clock performance enabling geodesy below the centimetre level 2018 William F. McGrew
X. Zhang
Robert Fasano
Stefan A. Schäffer
K. Beloy
Daniele Nicolodi
Roger C. Brown
N. Hinkley
Gianmaria Milani
M. Schioppo
+ PDF Chat Magneto-Optical Trap with Millimeter Ball Lenses 2020 C. Spencer Nichols
Leo Nofs
Michael A. Viray
Lu Ma
Éric Paradis
Georg Raithel
+ PDF Chat Evaluation of the blackbody radiation shift of an Yb optical lattice clock at KRISS 2022 Myoung-Sun Heo
Huidong Kim
Dai-Hyuk Yu
Won-Kyu Lee
Chang Yong Park
+ PDF Chat Differential clock comparisons with a multiplexed optical lattice clock 2022 Xin Zheng
Jonathan Dolde
Varun Lochab
Brett Merriman
Haoran Li
Shimon Kolkowitz
+ A pyramid MOT with integrated optical cavities as a cold atom platform for an optical lattice clock 2019 William Bowden
Richard Hobson
Ian R. Hill
Alvise Vianello
M. Schioppo
Alissa Silva
H. S. Margolis
P. E. G. Baird
P. Gill
+ PDF Chat Measurement of dc and ac Electric Fields inside an Atomic Vapor Cell with Wall-Integrated Electrodes 2022 Lu Ma
Michael A. Viray
David Anderson
Georg Raithel
+ PDF Chat Decoherence of Atomic Ensembles in Optical Lattice Clocks by Gravity 2022 Akio Kawasaki
+ Excited-Band Coherent Delocalization for Improved Optical Lattice Clock Performance 2024 Jacob L. Siegel
William F. McGrew
Youssef S. Hassan
Chun-Chia Chen
K. Beloy
Tanner Grogan
X. Zhang
Andrew D. Ludlow
+ PDF Chat Trapping, shaping, and isolating of an ion Coulomb crystal via state-selective optical potentials 2021 Pascal Weckesser
Fabian Thielemann
Daniel Hoenig
Alexander Lambrecht
Leon Karpa
Tobias Schaetz
+ PDF Chat Modeling motional energy spectra and lattice light shifts in optical lattice clocks 2020 K. Beloy
William F. McGrew
X. Zhang
Daniele Nicolodi
Robert Fasano
Youssef S. Hassan
Roger C. Brown
Andrew D. Ludlow

Works Cited by This (14)

Action Title Year Authors
+ PDF Chat Atomic Clock with<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mn>1</mml:mn><mml:mo>×</mml:mo><mml:msup><mml:mrow><mml:mn>10</mml:mn></mml:mrow><mml:mrow><mml:mo>−</mml:mo><mml:mn>18</mml:mn></mml:mrow></mml:msup></mml:mrow></mml:math>Room-Temperature Blackbody Stark Uncertainty 2014 K. Beloy
N. Hinkley
N. B. Phillips
Jeff Sherman
M. Schioppo
John H. Lehman
A. Feldman
Leonard M. Hanssen
C. W. Oates
Andrew D. Ludlow
+ PDF Chat High-Accuracy Measurement of Atomic Polarizability in an Optical Lattice Clock 2012 Jeff Sherman
N. Lemke
N. Hinkley
Marco Pizzocaro
Richard W. Fox
Andrew D. Ludlow
C. W. Oates
+ PDF Chat An optical lattice clock with accuracy and stability at the 10−18 level 2014 Benjamin Bloom
Travis Nicholson
Jason Williams
Sara L. Campbell
Michael Bishof
X. Zhang
Wei Zhang
Sarah Bromley
Jun Ye
+ PDF Chat High Accuracy Correction of Blackbody Radiation Shift in an Optical Lattice Clock 2012 Thomas Middelmann
Stephan Falke
Christian Lisdat
U. Sterr
+ PDF Chat Systematic evaluation of an atomic clock at 2 × 10−18 total uncertainty 2015 Travis Nicholson
Sara L. Campbell
Ross B. Hutson
G. Edward Marti
Benjamin Bloom
Rees McNally
Wei Zhang
M. D. Barrett
M. S. Safronova
G. F. Strouse
+ PDF Chat Observation and cancellation of a perturbing dc stark shift in strontium optical lattice clocks 2012 Jérôme Lodewyck
M. Zawada
L. Lorini
Mikhail Gurov
P. Lemonde
+ PDF Chat Frequency ratio of Yb and Sr clocks with 5 × 10−17 uncertainty at 150 seconds averaging time 2016 Nils Nemitz
Takuya Ohkubo
Masao Takamoto
Ichiro Ushijima
Manoj Das
Noriaki Ohmae
Hidetoshi Katori
+ PDF Chat Transportable Optical Lattice Clock with<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mn>7</mml:mn><mml:mo>×</mml:mo><mml:msup><mml:mn>10</mml:mn><mml:mrow><mml:mo>−</mml:mo><mml:mn>17</mml:mn></mml:mrow></mml:msup></mml:math>Uncertainty 2017 Silvio Koller
Jacopo Grotti
S. Vogt
Ali Al-Masoudi
Sören Dörscher
Sebastian Häfner
U. Sterr
Christian Lisdat
+ PDF Chat Improved absolute frequency measurement of the<sup>171</sup>Yb optical lattice clock at KRISS relative to the SI second 2017 Huidong Kim
Myoung-Sun Heo
Won-Kyu Lee
Chang Yong Park
Hyun-Gue Hong
Sang-Wook Hwang
Dai-Hyuk Yu
+ PDF Chat Absolute frequency measurement of the ${{}^{1}}{{\text{S}}_{0}}$ – ${{}^{3}}{{\text{P}}_{0}}$ transition of<sup>171</sup>Yb 2017 Marco Pizzocaro
Pierre Thoumany
Benjamin Rauf
Filippo Bregolin
Gianmaria Milani
Cecilia Clivati
Giovanni Antonio Costanzo
Filippo Levi
Davide Calonico