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According to relativity, the reading of an ideal clock is interpreted as the elapsed proper time along its classical trajectory through spacetime.
“Around-the-World Atomic Clocks: Predicted Relativistic Time Gains”
J. C. Hafele and Richard E. Keating · 1972
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“Observation of gravitationally induced quantum interference”
R. Colella, A. W. Overhauser, and S. A. Werner · 1975
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“Spontaneous emission from an extended wavepacket”
K. Rzążewski and W. Żakowicz · 1992
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“Measurement of the gravitational acceleration of an atom with a light-pulse atom interferometer”
M. Kasevich and S. Chu · 1992
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“Precision lifetime measurements of the 6 p 2 {\mathit{p}}^{2} p 1 / 2 , 3 / 2 {\mathit{p}}_{1/2,3/2} states in atomic cesium”
R. J. Rafac, C. E. Tanner, A. E. Livingston, K. W. Kukla, H. G. Berry, and C. A. Kurtz · 1994
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“Operational Quantum Physics”
P. Busch, M. Grabowski, and P. J. Lahti · 1995
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“Dipole coupling of atoms and light in gravitational fields”
K. Marzlin · 1995
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“A Hamilton operator for quantum optics in gravitational fields”
C. Lämmerzahl · 1995
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“Testing the equivalence principle through freely falling quantum objects”
L. Viola and R. Onofrio · 1997
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“Measurement of gravitational acceleration by dropping atoms”
A. Peters, K. Chung, and S. Chu · 1999
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“Introductory Quantum Optics”
C. Gerry and P. Knight · 2004
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“Precision lifetime measurements of a single trapped ion with ultrafast laser pulses”
D. L. Moehring et al · 2006
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“Fundamentals of Quantum Optics and Quantum Information”
P. Lambropoulos and D. Petrosyan · 2007
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“Schrödinger’s Cat Meets Einstein’s Twins: A Superposition of Different Clock Times”
V. Vedral and F. Morikoshi · 2008
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“A precision measurement of the gravitational redshift by the interference of matter waves”
H. Müller, A. Peters, and S. Chu · 2010
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“Introduction to Quantum Optics: From the Semi-classical Approach to Quantized Light”
G. Grynberg, A. Aspect, and C. Fabre · 2010
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“Optical Clocks and Relativity”
C. W. Chou, D. B. Hume, T. Rosenband, and D. J. Wineland · 2010
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“Quantum interferometric visibility as a witness of general relativistic proper time”
M. Zych, F. Costa, I. Pikovski, and Č. Brukner · 2011
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“Probabilistic and Statistical Aspects of Quantum Theory”
A. Holevo · 2011
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“Precision lifetime measurements of the first 2 +
M. Seidlitz et al · 2011
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“Local gravity measurement with the combination of atom interferometry and bloch oscillations”
R. Charrière, M. Cadoret, N. Zahzam, Y. Bidel, and A. Bresson · 2012
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“Twin paradox with macroscopic clocks in superconducting circuits”
J. Lindkvist, C. Sabín, I. Fuentes, A. Dragan, I. Svensson, P. Delsing, and G. Johansson · 2014
Cited alongside, same era.
“Quantum Test of the Universality of Free Fall”
D. Schlippert et al · 2014
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“Ideal clocks—a convenient fiction”
K. Lorek, J. Louko, and A. Dragan · 2015
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“Universal decoherence due to gravitational time dilation”
I. Pikovski, M. Zych, F. Costa, and Č. Brukner · 2015
Cited alongside, same era.
“SAGE: A proposal for a space atomic gravity explorer”
G. M. Tino et al · 2019
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“Probing gravity by holding atoms for 20 seconds”
V. Xu, M. Jaffe, C. D. Panda, S. L. Kristensen, L. W. Clark, and H. Müller · 2019
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“Engineering quantum states of matter for atomic clocks in shallow optical lattices”
R. B. Hutson, A. Goban, G. E. Marti, L. Sonderhouse, C. Sanner, and J. Ye · 2019
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“Gravitational Redshift in Quantum-Clock Interferometry”
A. Roura · 2020
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“Classical and Nonclassical Time Dilation for Quantum Clocks”
A. J. Paige, A. D. K. Plato, and M. S. Kim · 2020
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“Quantum clocks observe classical and quantum time dilation”
A. R. H. Smith and M. Ahmadi · 2020
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“The ACES/PHARAO space mission”
P. Laurent, D. Massonnet, L. Cacciapuoti, and C. Salomon · 2015
Cited alongside, same era.
“Single electron relativistic clock interferometer”
P. A. Bushev, J. H. Cole, D. Sholokhov, N. Kukharchyk, and M. Zych · 2016
Cited alongside, same era.
“Universal Decoherence under Gravity: A Perspective through the Equivalence Principle”
B. H. Pang, Y. Chen, and F. Y. Khalili · 2016
Cited alongside, same era.
“Trapped-atom interferometer with ultracold sr atoms”
X. Zhang, R. P. del Aguila, T. Mazzoni, N. Poli, and G. M. Tino · 2016
Cited alongside, same era.
“Will a Decaying Atom Feel a Friction Force?”
M. Sonnleitner, N. Trautmann, and S. M. Barnett · 2017
Cited alongside, same era.
“Atomic Interferometric Gravitational-Wave Space Observatory (AIGSO)”
D. Gao, J. Wang, and M. Zhan · 2018
Cited alongside, same era.
“Universal quantum modifications to general relativistic time dilation in delocalised clocks”
S. Khandelwal, M. P. E. Lock, and M. P. Woods · 2020
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“Coherent delocalization in the light-matter interaction”
N. Stritzelberger and A. Kempf · 2020
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“Test of general relativity by a pair of transportable optical lattice clocks”
M. Takamoto et al · 2020
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“Quantum time dilation in atomic spectra”
P. T. Grochowski, A. R. H. Smith, A. Dragan, and K. Dębski · 2021
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“Spacetime Quantum Reference Frames and superpositions of proper times”
F. Giacomini · 2021
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“Quantum delocalization, gauge, and quantum optics: Light-matter interaction in relativistic quantum information”
R. Lopp and E. Martín-Martínez · 2021
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“Unusually Special Relativity”
A. Dragan · 2021
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“Second-quantized Unruh-DeWitt detectors and their quantum reference frame transformations”
F. Giacomini and A. Kempf · 2022
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“Ab initio quantum theory of mass defect and time dilation in trapped-ion optical clocks”
V. J. Martínez-Lahuerta, S. Eilers, T. E. Mehlstäubler, P. O. Schmidt, and K. Hammerer · 2022
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“Resolving the gravitational redshift across a millimetre-scale atomic sample”
T. Bothwell et al · 2022
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“Differential clock comparisons with a multiplexed optical lattice clock”
X. Zheng, J. Dolde, V. Lochab, B. N. Merriman, H. Li, and S. Kolkowitz · 2022
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“Minute-scale gravimetry using a coherent atomic spatial superposition” (2023)
C. D. Panda, M. Tao, J. Egelhoff, M. Ceja, V. Xu, and H. Müller · 2023
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“A lab-based test of the gravitational redshift with a miniature clock network”
X. Zheng, J. Dolde, M. C. Cambria, H. M. Lim, and S. Kolkowitz · 2023
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