Fetching the paper…
Reading the bibliography…
The stability of an optical atomic clock is a critical figure of merit for almost all clock applications.
M. J. E. Golay, Field Homogenizing Coils for Nuclear Spin Resonance Instrumentation
1958
Earlier work this paper cites.
G. J. Dick, LO Induced Instabilities in Trapped Ion Frequency Standards
1987
Earlier work this paper cites.
L.-S. Ma, P. Jungner, J. Ye and J. L. Hall, Delivering the Same Optical Frequency at Two Places: Accurate Cancellation of Phase Noise Introduced by an Optical Fiber or Other Time-Varying Path
1994
Earlier work this paper cites.
G. Santarelli, C. Audoin, A. Makdissi, P. Laurent, G. J. Dick and A. Clairon, Frequency Stability Degradation of an Oscillator Slaved to a Periodically Interrogated Atomic Resonator
1998
Earlier work this paper cites.
M. M. Boyd, T. Zelevinsky, A. D. Ludlow, S. Blatt, T. Zanon-Willette, S. M. Foreman and J. Ye, Nuclear Spin Effects in Optical Lattice Clocks
2007
Earlier work this paper cites.
X. Baillard, M. Fouché, R. Le Targat, P. G. Westergaard, A. Lecallier, Y. Le Coq, G. D. Rovera, S. Bize and P. Lemonde, Accuracy Evaluation of an Optical Lattice Clock with Bosonic Atoms
2007
Earlier work this paper cites.
M. M. Boyd, Ph. D. thesis
2007
Earlier work this paper cites.
C. W. Chou, D. B. Hume, T. Rosenband and D.J. Wineland, Optical Clocks and Relativity
2010
Earlier work this paper cites.
V. I. Yudin, A. V. Taichenachev, C. W. Oates, Z. W. Barber, N. D. Lemke, A. D. Ludlow, U. Sterr, Ch. Lisdat and F. Riehle, Hyper-Ramsey Spectroscopy of Optical Clock Transitions
2010
Earlier work this paper cites.
M. Takamoto, T. Takano, and H. Katori, Frequency Comparison of Optical Lattice Clocks Beyond the Dick Limit
2011
Earlier work this paper cites.
St. Falke, H. Schnatz, J.S.R. Vellore Winfred, Th. Middelmann, St. Vogt, S. Weyers, B. Lipphardt, G. Grosche, F. Riehle, U. Sterr and Ch. Lisdat, The 87
2011
Earlier work this paper cites.
P.G. Westergaard, J. Lodewyck, L. Lorini, A. Lecallier, E.A. Burt, M. Zawada, J. Millo and P. Lemonde, Lattice-Induced Frequency Shifts in Sr Optical Lattice Clocks at the 10 − 17 10^{-17} Level
2011
Earlier work this paper cites.
T. Kessler, C. Hagemann, C. Grebing, T. Legero, U. Sterr, F. Riehle, M. J. Martin, L. Chen and J. Ye, A Sub-40-mHz-Linewidth Laser Based on a Silicon Single-Crystal Optical Cavity
2012
Earlier work this paper cites.
T. L. Nicholson, M. J. Martin, J. R. Williams, B. J. Bloom, M. Bishof, M. D. Swallows, S. L. Campbell and J. Ye, Comparison of Two Independent Sr Optical Clocks with 1 × 10 − 17 1\times 10^{-17} Stability at 10 3 10^{3} s
2012
Earlier work this paper cites.
S. Falke, M. Misera, U. Sterr and C. Lisdat, Delivering Pulsed and Phase Stable Light to Atoms of An Optical Clock
2012
Earlier work this paper cites.
T. Rosenband and D. R. Leibrandt, Exponential Scaling of Clock Stability with Atom Number
2013
Earlier work this paper cites.
J. Borregaard and A. S. Sørensen, Efficient Atomic Clocks Operated with Several Atomic Ensembles
2013
Earlier work this paper cites.
A. Derevianko and M. Pospelov, Hunting for Topological Dark Matter With Atomic Clocks
2014
Earlier work this paper cites.
E. M. Kessler, P. Kómár, M. Bishof, L. Jiang, A. S. Sørensen, J. Ye and M.D. Lukin, Heisenberg-Limited Atom Clocks Based on Entangled Qubits
2014
Earlier work this paper cites.
S. Falke, N. Lemke, C. Grebing, B. Lipphardt, S. Weyers, V. Gerginov, N. Huntemann, C. Hagemann, A. Al-Masoudi, S. Häfner, S. Vogt, U. Sterr and C. Lisdat, A Strontium Lattice Clock with 3 × 10 − 17 3\times 10^{-17} Inaccuracy and Its Frequency
2014
Earlier work this paper cites.
A. D. Ludlow, M. M. Boyd, J. Ye, E. Peik, P. O. Schmidt, Optical Atomic Clocks
2015
Earlier work this paper cites.
A. Al-Masoudi, S. Dörscher, S. Häfner, U. Sterr and Ch. Lisdat, Noise and Instability of an Optical Lattice Clock
2015
Earlier work this paper cites.
T. Xia, M. Lichtman, K. Maller, A. W. Carr, M. J. Piotrowicz, L. Isenhower and M. Saffman, Randomized Benchmarking of Single-Qubit Gates in a 2D Array of Neutral-Atom Qubits
2015
Earlier work this paper cites.
I. Ushijima, M. Takamoto, M. Dias, T. Ohkubo and H. Katori, Cryogenic Optical Lattice Clocks
2015
Earlier work this paper cites.
N. Huntemann, C. Sanner, B. Lipphardt, C. Tamm and E. Peik, Single-Ion Atomic Clock with 3 × 10 − 18 3\times{10}^{-18} Systematic Uncertainty
2016
Earlier work this paper cites.
T. Takano, M. Takamoto, I. Ushijima, N. Ohmae, T. Akatsuka, A. Yamaguchi, Y. Kuroishi, H. Munekane, B. Miyahara and H. Katori, Geopotential Measurements with Synchronously Linked Optical Lattice Clocks
2016
Cited alongside, same era.
S. Kolkowitz, I. Pikovski, N. Langellier, M. D. Lukin, R. L. Walsworth and J. Ye, Gravitational Wave Detection with Optical Lattice Atomic Clocks
2016
Cited alongside, same era.
D. B. Hume and D. R. Leibrandt, Probing Beyond the Laser Coherence Time in Optical Clock Comparisons
2016
Cited alongside, same era.
S. B. Koller, J. Grotti, St. Vogt, A. Al-Masoudi, S. Dörscher, S. Häfner, U. Sterr and Ch. Lisdat, Transportable Optical Lattice Clock with 7 × 10 − 17 7\times 10^{-17} Uncertainty
2017
Cited alongside, same era.
D. G. Matei, T. Legero, S. Häfner, C. Grebing, R. Weyrich, W. Zhang, L. Sonderhouse, J. M. Robinson, J. Ye, F. Riehle and U. Sterr, 1.5 μ \mu m Lasers with Sub-10 mHz Linewidth
E. Pedrozo-Peñafiel, S. Colombo, C. Shu, A. F. Adiyatullin, Z. Li, E. Mendez, B. Braverman, A. Kawasaki, D. Akamatsu, Y. Xiao and V. Vuletić, Entanglement on an Optical Atomic-Clock Transition
2020
Later among the works it cites.
D. Yankelev, C. Avinadav, N. Davidson and O. Firstenberg, Atom Interferometry with Thousand-Fold Increase in Dynamic Range
2020
Later among the works it cites.
L. Pezzè and A. Smerzi, Heisenberg-Limited Noisy Atomic Clock Using a Hybrid Coherent and Squeezed State Protocol
2020
Later among the works it cites.
L. Pezzè and A. Smerzi, Quantum Phase Estimation Algorithm with Gaussian Spin States
2021
Later among the works it cites.
T. Schuldt, M. Gohlke, M. Oswald, J. Wüst, T. Blomberg, K. Döringshoff, A. Bawamia, A. Wicht, M. Lezius, K. Voss, M. Krutzik, S. Herrmann, E. Kovalchuk, A. Peters and C. Braxmaier, Optical Clock Technologies for Global Navigation Satellite Systems
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
2017
Cited alongside, same era.
W. Zhang, J. M. Robinson, L. Sonderhouse, E. Oelker, C. Benko, J. L. Hall, T. Legero, D. G. Matei, F. Riehle, U. Sterr and J. Ye, Ultrastable Silicon Cavity in a Continuously Operating Closed-Cycle Cryostat at 4 K
2017
Cited alongside, same era.
M. Schioppo, R. C. Brown, W. F. McGrew, N. Hinkley, R. J. Fasano, K. Beloy, T. H. Yoon, G. Milani, D. Nicolodi, J. A. Sherman, N. B. Phillips, C. W. Oates and A. D. Ludlow, Ultrastable Optical Clock with Two Cold-Atom Ensembles
2017
Cited alongside, same era.
S. L. Campbell, R. B. Hutson, G. E. Marti, A. Goban, N. Darkwah Oppong, R. McNally, L. Sonderhouse, J. M. Robinson, W. Zhang, B. J. Bloom, J. Ye, A Fermi-Degenerate Three-Dimensional Optical Lattice Clock
2017
Cited alongside, same era.
R.C. Brown, N.B. Phillips, K. Beloy, W.F. McGrew, M. Schioppo, R.J. Fasano, G. Milani, X. Zhang, N. Hinkley, H. Leopardi, T. H. Yoon, D. Nicolodi, T.M. Fortier and A.D. Ludlow, Hyperpolarizability and Operational Magic Wavelength in an Optical Lattice Clock
2017
Cited alongside, same era.
W. F. McGrew, X. Zhang, R. J. Fasano, S. A. Schäffer, K. Beloy, D. Nicolodi, R. C. Brown, N. Hinkley, G. Milani, M. Schioppo, T. H. Yoon and A. D. Ludlow, Atomic Clock Performance Enabling Geodesy Below the Centimetre Level
2018
Cited alongside, same era.
J. Grotti, S. Koller, S. Vogt, S. Häfner, U. Sterr, C. Lisdat, H. Denker, C. Voigt, L. Timmen, A. Rolland, F. N. Baynes, H. S. Margolis, M. Zampaolo, P. Thoumany, M. Pizzocaro, B. Rauf, F. Bregolin, A. Tampellini, P. Barbieri, M. Zucco, G. A. Costanzo, C. Clivati, F. Levi and D. Calonico, Geodesy and Metrology with a Transportable Optical Clock
2018
Cited alongside, same era.
M. S. Safronova, D. Budker, D. DeMille, D. F. Jackson Kimball, A. Derevianko and C. W. Clark, Search for New Physics with Atoms and Molecules
2018
Cited alongside, same era.
2021
Later among the works it cites.
T. Bothwell, C. J. Kennedy, A. Aeppli, D. Kedar, J. M. Robinson, E. Oelker, A. Staron and J. Ye, Resolving the Gravitational Redshift Across a Millimetre-Scale Atomic Sample
2022
Later among the works it cites.
X. Zheng, J. Dolde, V. Lochab, B. N. Merriman, H. Li and S. Kolkowitz, Differential Clock Comparisons with a Multiplexed Optical Lattice Clock
2022
Later among the works it cites.
M. E. Kim, W. F. McGrew, N. V. Nardelli, E. R. Clements, Y. S. Hassan, X. Zhang, J. L. Valencia, H. Leopardi, D. B. Hume, T. M. Fortier, A. D. Ludlow and D. R. Leibrandt, Improved Interspecies Optical Clock Comparisons through Differential Spectroscopy
2022
Later among the works it cites.
2022
Later among the works it cites.
W. Li, S. Wu, A. Smerzi and L. Pezze, Improved Absolute Clock Stability by the Joint Interrogation of Two Atomic Ensembles
2022
Later among the works it cites.
T. M. Graham, Y. Song, J. Scott, C. Poole, L. Phuttitarn, K. Jooya, P. Eichler, X. Jiang, A. Marra, B. Grinkemeyer, M. Kwon, M. Ebert, J. Cherek, M. T. Lichtman, M. Gillette, J. Gilbert, D. Bowman, T. Ballance, C. Campbell, E. D. Dahl, O. Crawford, N. S. Blunt, B. Rogers, T. Noel and M. Saffman, Multi-Qubit Entanglement and Algorithms on a Neutral-Atom Quantum Computer
2022
Later among the works it cites.
E. Deist, Y.-H. Lu, J. Ho, M. K. Pasha, J. Zeiher, Z. Yan, and D. M. Stamper-Kurn, Mid-Circuit Cavity Measurement in a Neutral Atom Array
2022
Later among the works it cites.
D. Kedar, J. Yu, E. Oelker, A. Staron, W. Milner, J.M. Robinson, T. Legero, F. Riehle, U. Sterr, and J. Ye, Frequency stability of cryogenic silicon cavities with semiconductor crystalline coatings
2023
Closest in time.
W. J. Eckner, N. D. Oppong, A. Cao, A. W. Young, W. R. Milner, J. M. Robinson1, J. Ye and A. M. Kaufman, Realizing Spin Squeezing with Rydberg Interactions in an Optical Clock
2023
Closest in time.
X. Zheng, J. Dolde, M.C. Camrbia, H. M. Lim and S. Kolkowitz, A Lab-Based Test of the Gravitational Redshift with a Miniatured Clock Network
2023
Closest in time.
K. Singh, C. E. Bradley, S. Anand, V. Ramesh, R. White and H. Bernien, Mid-Circuit Correction of Correlated Phase Errors Using an Array of Spectator Qubits
2023
Closest in time.
T. M. Graham, L. Phuttitarn, R. Chinnarasu, Y. Song, C. Poole, K. Jooya, J. Scott, A. Scott, P. Eichler and M. Saffman, Mid-circuit Measurements on a Neutral Atom Quantum Processor
2023
Closest in time.
J. W. Lis, A. Senoo, W. F. McGrew, F. Rönchen, A. Jenkins and A. M. Kaufman, Midcircuit Operations Using the omg Architecture in Neutral Atom Arrays
2023
Closest in time.
M. A. Norcia et al., Midcircuit Qubit Measurement and Rearrangement in a 171
2023
Closest in time.
2023
Closest in time.
E. Boldbaatar, D. Grant, S. Choy, S. Zaminpardaz and L. Holden Evaluating Optical Clock Performance for GNSS Positioning
2023
Closest in time.
2023
Closest in time.
K. Kim, A. Aeppli, T. Bothwell and J. Ye, Evaluation of Lattice Light Shift at Low 10 − 19 10^{-19} Uncertainty for a Shallow Lattice Sr Optical Clock
2023
Closest in time.
S. Dörscher, J. Klose, S. Maratha Palli and Ch. Lisdat, Experimental Determination of the E2-M1 Polarizability of the Strontium Clock Transition
2023
Closest in time.