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The research on cold-atom interferometers gathers a large community of about 50 groups worldwide both in the academic and now in the industrial sectors.
1907
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1908
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1912
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1912
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G. Sagnac, “L’éther lumineux démontré par l’effet du vent relatif d’éther dans un interféromètre en rotation uniforme,” C. R. Acad. Sci. (Paris) 157
1913
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C. J. Bordé, C. Salomon, S. Avrillier, A. van Lerberghe, C. Bréant, D. Bassi, and G. Scoles, “Optical Ramsey fringes with traveling waves,” Phys. Rev. A 30
1984
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C. Bordé, “Atomic interferometry with internal state labelling,” Physics Letters A 140
1989
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M. A. Kasevich, E. Riis, S. Chu, and R. G. DeVoe, “rf spectroscopy in an atomic fountain,” Phys. Rev. Lett. 63
1989
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C. Monroe, W. Swann, H. Robinson, and C. Wieman, “Very cold trapped atoms in a vapor cell,” Phys. Rev. Lett. 65
1990
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M. Kasevich and S. Chu, “Atomic interferometry using stimulated Raman transitions,” Phys. Rev. Lett. 67
1991
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F. Riehle, T. Kisters, A. Witte, J. Helmcke, and C. J. Bordé, “Optical ramsey spectroscopy in a rotating frame: Sagnac effect in a matter-wave interferometer,” Phys. Rev. Lett. 67
1991
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D. W. Keith, C. R. Ekstrom, Q. A. Turchette, and D. E. Pritchard, “An interferometer for atoms,” Phys. Rev. Lett. 66
1991
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O. Carnal and J. Mlynek, “Young’s double-slit experiment with atoms: A simple atom interferometer,” Phys. Rev. Lett. 66
1991
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J. Robert, C. Miniatura, S. Le Boiteux, J. Reinhardt, V. Bocvarski, and J. Baudon, “Atomic interferometry with metastable hydrogen atoms,” EPL (Europhysics Letters) 16
1991
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W. M. Itano, J. C. Bergquist, J. J. Bollinger, J. M. Gilligan, D. J. Heinzen, F. L. Moore, M. G. Raizen, and D. J. Wineland, “Quantum projection noise: Population fluctuations in two-level systems,” Phys. Rev. A 47
1993
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P. Storey and C. Cohen-Tannoudji, “The feynman path integral approach to atomic interferometry,” J. Phys. II France 4
1994
Earlier work this paper cites.
D. S. Weiss, B. C. Young, and S. Chu, “Precision measurement of cs {}_{\textrm{{cs}}} based on photon recoil using laser-cooled atoms and atomic interferometry,” Appl. Phys. B 59
1994
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T. M. Niebauer, G. S. Sasagawa, J. E. Faller, R. Hilt, and F. Klopping, “A new generation of absolute gravimeters,” Metrologia 32
1995
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P. Berman, Atom Interferometry (Elsevier Science, 1997)
1997
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A. Lenef, T. D. Hammond, E. T. Smith, M. S. Chapman, R. A. Rubenstein, and D. E. Pritchard, “Rotation sensing with an atom interferometer,” Phys. Rev. Lett. 78
1997
Earlier work this paper cites.
T. L. Gustavson, P. Bouyer, and M. A. Kasevich, “Precision Rotation Measurements with an Atom Interferometer Gyroscope,” Phys. Rev. Lett. 78
1997
Earlier work this paper cites.
K. Dieckmann, R. J. C. Spreeuw, M. Weidemüller, and J. T. M. Walraven, “Two-dimensional magneto-optical trap as a source of slow atoms,” Phys. Rev. A 58
1998
Earlier work this paper cites.
M. Snadden, J. McGuirk, P. Bouyer, K. Haritos, and M. Kasevich, “Measurement of the Earth’s Gravity Gradient with an Atom Interferometer-Based Gravity Gradiometer,” Phys. Rev. Lett. 81
1998
Earlier work this paper cites.
A. Peters, K. Y. Chung, and S. Chu, “Measurement of gravitational acceleration by dropping atoms,” Nature 400
1999
Earlier work this paper cites.
J. M. Hensley, A. Peters, and S. Chu, “Active low frequency vertical vibration isolation,” Rev. Sci. Instrum. 70
1999
Earlier work this paper cites.
T. L. Gustavson, A. Landragin, and M. A. Kasevich, “Rotation sensing with a dual atom-interferometer sagnac gyroscope,” Classical and Quantum Gravity 17
2000
Earlier work this paper cites.
D. A. Steck, Rubidium 87 D line data (2001)
2001
Earlier work this paper cites.
A. Peters, K. Y. Chung, and S. Chu, “High-precision gravity measurements using atom interferometry,” Metrologia 38
2001
Earlier work this paper cites.
J. M. McGuirk, G. T. Foster, J. B. Fixler, M. J. Snadden, and M. A. Kasevich, “Sensitive absolute-gravity gradiometry using atom interferometry,” Phys. Rev. A 65
2002
Earlier work this paper cites.
2002
Earlier work this paper cites.
M. Büchner, R. Delhuille, A. Miffre, C. Robilliard, J. Vigué, and C. Champenois, “Diffraction phases in atom interferometers,” Phys. Rev. A 68
2003
Earlier work this paper cites.
C. J. Bordé, “Quantum theory of atom-wave beam splitters and application to multidimensional atomic gravito-inertial sensors,” General Relativity and Gravitation 36
2004
Earlier work this paper cites.
C. Jentsch, Konzeption und Aufbau eines Experimentes zur quantenlimitierten Inertialsensorik mit lasergekühlten Rubidiumatomen (Cuvillier Verlag, 2004)
2004
Earlier work this paper cites.
C. Jentsch, T. Mueller, E. M. Rasel, and W. Ertmer, “Hyper: A satellite mission in fundamental physics based on high precision atom interferometry,” General Relativity and Gravitation 36
2004
Earlier work this paper cites.
S. Fray, C. A. Diez, T. W. Hänsch, and M. Weitz, “Atomic interferometer with amplitude gratings of light and its applications to atom based tests of the equivalence principle,” Phys. Rev. Lett. 93
2004
Earlier work this paper cites.
J. Fils, F. Leduc, P. Bouyer, D. Holleville, N. Dimarcq, A. Clairon, and A. Landragin, English“Influence of optical aberrations in an atomic gyroscope,” Eur. Phys. J. D 36
2005
Earlier work this paper cites.
C. Jekeli, “Navigation Error Analysis of Atom Interferometer Inertial Sensor,” Navigation 52
2005
Earlier work this paper cites.
X. Baillard, A. Gauguet, S. Bize, P. Lemonde, P. Laurent, A. Clairon, and P. Rosenbusch, “Interference-filter-stabilized external-cavity diode lasers,” Opt. Comm. 266
2006
Earlier work this paper cites.
P. Cheinet, F. Pereira Dos Santos, T. Petelski, J. Le Gouët, J. Kim, K. Therkildsen, A. Clairon, and A. Landragin, “Compact laser system for atom interferometry,” Appl. Phys. B 84
2006
Earlier work this paper cites.
H. Müller, S.-W. Chiow, Q. Long, and S. Chu, “Phase-locked, low-noise, frequency agile titanium:sapphire lasers for simultaneous atom interferometers,” Opt. Lett. 31
2006
Earlier work this paper cites.
A. Bertoldi, G. Lamporesi, L. Cacciapuoti, M. de Angelis, M. Fattori, T. Petelski, A. Peters, M. Prevedelli, J. Stuhler, and G. M. Tino, “Atom interferometry gravity-gradiometer for the determination of the Newtonian gravitational constant G,” Euro. Phys. J. D 40
2006
Earlier work this paper cites.
D. S. Durfee, Y. K. Shaham, and M. A. Kasevich, “Long-term stability of an area-reversible atom-interferometer sagnac gyroscope,” Phys. Rev. Lett. 97
2006
Earlier work this paper cites.
B. Canuel, F. Leduc, D. Holleville, A. Gauguet, J. Fils, A. Virdis, A. Clairon, N. Dimarcq, C. J. Bordé, A. Landragin, and P. Bouyer, “Six-axis inertial sensor using cold-atom interferometry,” Phys. Rev. Lett. 97
2006
Earlier work this paper cites.
J. B. Fixler, G. T. Foster, J. M. McGuirk, and M. A. Kasevich, “Atom Interferometer Measurement of the Newtonian Constant of Gravity,” Science 315
2007
Earlier work this paper cites.
J. Le Gouët, T. E. Mehlstäubler, J. Kim, S. Merlet, A. Clairon, A. Landragin, and F. Pereira Dos Santos, “Limits to the sensitivity of a low noise compact atomic gravimeter,” Appl. Phys. B 92
2008
Earlier work this paper cites.
P. Cheinet, B. Canuel, F. Pereira Dos Santos, A. Gauguet, F. Yver-Leduc, and A. Landragin, “Measurement of the Sensitivity Function in a Time-Domain Atomic Interferometer,” Instrumentation and Measurement, IEEE Transactions on 57
2008
Earlier work this paper cites.
K. Takase, Precision rotation rate measurements with a mobile atom interferometer , Ph.D. thesis, Stanford University (2008)
2008
Earlier work this paper cites.
M. Cadoret, E. de Mirandes, P. Cladé, S. Guellati-Khélifa, C. Schwob, F. Nez, L. Julien, and F. Biraben, “Combination of bloch oscillations with a Ramsey-Bordé interferometer: New determination of the fine structure constant,” Phys. Rev. Lett. 101
2008
Earlier work this paper cites.
S. Dimopoulos, P. W. Graham, J. M. Hogan, M. A. Kasevich, and S. Rajendran, “Atomic gravitational wave interferometric sensor,” Phys. Rev. D 78
2008
Earlier work this paper cites.
A. D. Cronin, J. Schmiedmayer, and D. E. Pritchard, “Optics and interferometry with atoms and molecules,” Rev. Mod. Phys. 81
2009
Earlier work this paper cites.
G. Stern, B. Battelier, R. Geiger, G. Varoquaux, A. Villing, F. Moron, O. Carraz, N. Zahzam, Y. Bidel, W. Chaibi, F. Pereira Dos Santos, A. Bresson, A. Landragin, and P. Bouyer, “Light-pulse atom interferometry in microgravity,” Eur. Phys. J. D 53
2009
Earlier work this paper cites.
O. Carraz, F. Lienhart, R. Charrière, M. Cadoret, N. Zahzam, Y. Bidel, and A. Bresson, “Compact and robust laser system for onboard atom interferometry,” Appl. Phys. B 97
2009
Earlier work this paper cites.
S. Merlet, J. L. Gouët, Q. Bodart, A. Clairon, A. Landragin, F. P. D. Santos, and P. Rouchon, “Operating an atom interferometer beyond its linear range,” Metrologia 46
2009
Earlier work this paper cites.
T. Lévèque, A. Gauguet, F. Michaud, F. Pereira Dos Santos, and A. Landragin, “Enhancing the Area of a Raman Atom Interferometer Using a Versatile Double-Diffraction Technique,” Phys. Rev. Lett. 103
2009
Earlier work this paper cites.
P. Cladé, S. Guellati-Khélifa, F. Nez, and F. Biraben, “Large momentum beam splitter using bloch oscillations,” Phys. Rev. Lett. 102
2009
Earlier work this paper cites.
Q. Bodart, S. Merlet, N. Malossi, F. Pereira Dos Santos, P. Bouyer, and A. Landragin, “A cold atom pyramidal gravimeter with a single laser beam,” Appl. Phys. Lett. 96
2010
Earlier work this paper cites.
T. van Zoest, N. Gaaloul, Y. Singh, H. Ahlers, W. Herr, S. T. Seidel, W. Ertmer, E. Rasel, M. Eckart, E. Kajari, S. Arnold, G. Nandi, W. P. Schleich, R. Walser, A. Vogel, K. Sengstock, K. Bongs, W. Lewoczko-Adamczyk, M. Schiemangk, T. Schuldt, A. Peters, T. Konemann, H. Muntinga, C. Lammerzahl, H. Dittus, T. Steinmetz, T. W. Hansch, and J. Reichel, “Bose-Einstein Condensation in Microgravity,” Science 328
2010
Earlier work this paper cites.
T. Kovachy, J. M. Hogan, D. M. S. Johnson, and M. A. Kasevich, “Optical lattices as waveguides and beam splitters for atom interferometry: An analytical treatment and proposal of applications,” Phys. Rev. A 82
2010
Earlier work this paper cites.
A. Louchet-Chauvet, T. Farah, Q. Bodart, A. Clairon, A. Landragin, S. Merlet, and F. Pereira Dos Santos, “The influence of transverse motion within an atomic gravimeter,” New J. Phys. 13
2011
Earlier work this paper cites.
R. Geiger, V. Ménoret, G. Stern, N. Zahzam, P. Cheinet, B. Battelier, A. Villing, F. Moron, M. Lours, Y. Bidel, A. Bresson, A. Landragin, and P. Bouyer, “Detecting inertial effects with airborne matter-wave interferometry,” Nat Commun 2
2011
Earlier work this paper cites.
V. Ménoret, R. Geiger, G. Stern, N. Zahzam, B. Battelier, A. Bresson, A. Landragin, and P. Bouyer, “Dual-wavelength laser source for onboard atom interferometry,” Opt. Lett. 36
2011
Cited alongside, same era.
M. de Angelis, M. C. Angonin, Q. Beaufils, C. Becker, A. Bertoldi, K. Bongs, T. Bourdel, P. Bouyer, V. Boyer, S. Dörscher, H. Duncker, W. Ertmer, T. Fernholz, T. M. Fromhold, W. Herr, P. Krüger, C. Kürbis, C. J. Mellor, F. Pereira Dos Santos, A. Peters, N. Poli, M. Popp, M. Prevedelli, E. M. Rasel, J. Rudolph, F. Schreck, K. Sengstock, F. Sorrentino, S. Stellmer, G. M. Tino, T. Valenzuela, T. J. Wendrich, A. Wicht, P. Windpassinger, and P. Wolf, “iSense: A Portable Ultracold-Atom-Based Gravimeter,” Procedia Computer Science Proceedings of the 2nd European Future Technologies Conference and Exhibition 2011 (FET 11), 7
2011
Cited alongside, same era.
P. Wolf, L. Blanchet, C. J. Bordé, S. Reynaud, C. Salomon, and C. Cohen-Tannoudji, “Does an atom interferometer test the gravitational redshift at the compton frequency?” Classical and Quantum Gravity 28
2011
Cited alongside, same era.
I. Dutta, D. Savoie, B. Fang, B. Venon, C. L. Garrido Alzar, R. Geiger, and A. Landragin, “Continuous cold-atom inertial sensor with 1 nrad / sec 1\text{ }\text{ }\mathrm{nrad}/\mathrm{sec} rotation stability,” Phys. Rev. Lett. 116
2016
Later among the works it cites.
B. Battelier, B. Barrett, L. Fouché, L. Chichet, L. Antoni-Micollier, H. Porte, F. Napolitano, J. Lautier, A. Landragin, and P. Bouyer, “Development of compact cold-atom sensors for inertial navigation,” in Quantum Optics , Vol. 9900, edited by J. Stuhler and A. J. Shields, International Society for Optics and Photonics (SPIE, 2016) pp. 21 – 37
2016
Later among the works it cites.
R. P. Middlemiss, A. Samarelli, D. J. Paul, J. Hough, S. Rowan, and G. D. Hammond, “Measurement of the Earth tides with a MEMS gravimeter,” Nature 531
2016
Later among the works it cites.
P. W. Graham, J. M. Hogan, M. A. Kasevich, and S. Rajendran, “Resonant mode for gravitational wave detectors based on atom interferometry,” Phys. Rev. D 94
2016
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J. K. Stockton, K. Takase, and M. A. Kasevich, “Absolute Geodetic Rotation Measurement Using Atom Interferometry,” Phys. Rev. Lett. 107
2011
Cited alongside, same era.
K. U. Schreiber, T. Klügel, J.-P. R. Wells, R. B. Hurst, and A. Gebauer, “How to detect the chandler and the annual wobble of the earth with a large ring laser gyroscope,” Phys. Rev. Lett. 107
2011
Cited alongside, same era.
R. Bouchendira, P. Cladé, S. Guellati-Khélifa, , F. Nez, and F. Biraben, “New determination of the fine structure constant and test of the quantum electrodynamics,” Phys. Rev. Lett. 106
2011
Cited alongside, same era.
S.-w. Chiow, T. Kovachy, H.-C. Chien, and M. A. Kasevich, “102 h-bar k Large Area Atom Interferometers,” Phys. Rev. Lett. 107
2011
Cited alongside, same era.
Z. Jiang, V. Pálinkáš, F. E. Arias, J. Liard, S. Merlet, H. Wilmes, L. Vitushkin, L. Robertsson, L. Tisserand, F. Pereira Dos Santos, Q. Bodart, R. Falk, H. Baumann, S. Mizushima, J. Mäkinen, M. Bilker-Koivula, C. Lee, I. M. Choi, B. Karaboce, W. Ji, Q. Wu, D. Ruess, C. Ullrich, J. Kostelecký, D. Schmerge, M. Eckl, L. Timmen, N. Le Moigne, R. Bayer, T. Olszak, J. Ågren, C. Del Negro, F. Greco, M. Diament, S. Deroussi, S. Bonvalot, J. Krynski, M. Sekowski, H. Hu, L. J. Wang, S. Svitlov, A. Germak, O. Francis, M. Becker, D. Inglis, and I. Robinson, “The 8th International Comparison of Absolute Gravimeters 2009: the first Key Comparison (CCM.G-K1) in the field of absolute gravimetry,” Metrologia 49
2012
Cited alongside, same era.
M.-K. Zhou, Z.-K. Hu, X.-C. Duan, B.-L. Sun, L.-L. Chen, Q.-Z. Zhang, and J. Luo, “Performance of a cold-atom gravimeter with an active vibration isolator,” Phys. Rev. A 86
2012
Cited alongside, same era.
S.-Y. Lan, P.-C. Kuan, B. Estey, P. Haslinger, and H. Müller, “Influence of the Coriolis Force in Atom Interferometry,” Phys. Rev. Lett. 108
2012
Cited alongside, same era.
T. M. Niebauer, R. Billson, A. Schiel, D. van Westrum, and F. Klopping, “The self-attraction correction for the FG5X absolute gravity meter,” Metrologia 50
2012
Cited alongside, same era.
G. Tackmann, P. Berg, C. Schubert, S. Abend, M. Gilowski, W. Ertmer, and E. M. Rasel, “Self-alignment of a compact large-area atomic sagnac interferometer,” New J. Phys 14
2012
Cited alongside, same era.
Later among the works it cites.
B. Barrett, L. Antoni-Micollier, L. Chichet, B. Battelier, T. Lévèque, A. Landragin, and P. Bouyer, “Dual matter-wave inertial sensors in weightlessness,” Nat Commun 7
2016
Later among the works it cites.
X.-C. Duan, X.-B. Deng, M.-K. Zhou, K. Zhang, W.-J. Xu, F. Xiong, Y.-Y. Xu, C.-G. Shao, J. Luo, and Z.-K. Hu, “Test of the universality of free fall with atoms in different spin orientations,” Phys. Rev. Lett. 117
2016
Later among the works it cites.
H. Ahlers, H. Müntinga, A. Wenzlawski, M. Krutzik, G. Tackmann, S. Abend, N. Gaaloul, E. Giese, A. Roura, R. Kuhl, C. Lämmerzahl, A. Peters, P. Windpassinger, K. Sengstock, W. P. Schleich, W. Ertmer, and E. M. Rasel, “Double bragg interferometry,” Phys. Rev. Lett. 116
2016
Later among the works it cites.
R. H. Parker, C. Yu, B. Estey, W. Zhong, E. Huang, and H. Müller, “Controlling the multiport nature of bragg diffraction in atom interferometry,” Phys. Rev. A 94
2016
Later among the works it cites.
O. Hosten, N. J. Engelsen, R. Krishnakumar, and M. A. Kasevich, “Measurement noise 100 times lower than the quantum-projection limit using entangled atoms,” Nature 529
2016
Later among the works it cites.
X. Wu, F. Zi, J. Dudley, R. J. Bilotta, P. Canoza, and H. Müller, “Multiaxis atom interferometry with a single-diode laser and a pyramidal magneto-optical trap,” Optica 4
2017
Later among the works it cites.
M. Thomas, D. Ziane, P. Pinot, R. Karcher, A. Imanaliev, F. Pereira Dos Santos, S. Merlet, F. Piquemal, and P. Espel, “A determination of the Planck constant using the LNE Kibble balance in air,” Metrologia 54
2017
Later among the works it cites.
D. Boddice, N. Metje, and G. Tuckwell, “Capability assessment and challenges for quantum technology gravity sensors for near surface terrestrial geophysical surveying,” J. Appl. Geophys. 146
2017
Later among the works it cites.
G. W. Biedermann, H. J. McGuinness, A. V. Rakholia, Y.-Y. Jau, D. R. Wheeler, J. D. Sterk, and G. R. Burns, “Atom interferometry in a warm vapor,” Phys. Rev. Lett. 118
2017
Later among the works it cites.
G. Rosi, G. D’Amico, L. Cacciapuoti, F. Sorrentino, M. Prevedelli, M. Zych, . Brukner, and G. M. Tino, “Quantum test of the equivalence principle for atoms in coherent superposition of internal energy states,” Nat Commun 8
2017
Later among the works it cites.
P. Touboul et al, “Microscope,” Phys. Rev. Lett. 119
2017
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P. Asenbaum, C. Overstreet, T. Kovachy, D. D. Brown, J. M. Hogan, and M. A. Kasevich, “Phase shift in an atom interferometer due to spacetime curvature across its wave function,” Phys. Rev. Lett. 118
2017
Later among the works it cites.
I. Riou, N. Mielec, G. Lefévre, M. Prevedelli, A. Landragin, P. Bouyer, A. Bertoldi, R. Geiger, and B. Canuel, “A marginally stable optical resonator for enhanced atom interferometry,” Journal of Physics B: Atomic, Molecular and Optical Physics 50
2017
Later among the works it cites.
M. Dovale-Álvarez, D. D. Brown, A. W. Jones, C. M. Mow-Lowry, H. Miao, and A. Freise, “Fundamental limitations of cavity-assisted atom interferometry,” Phys. Rev. A 96
2017
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L. Hu, N. Poli, L. Salvi, and G. M. Tino, “Atom Interferometry with the Sr Optical Clock Transition,” Phys. Rev. Lett. 119
2017
Later among the works it cites.
M. S. Safronova, D. Budker, D. DeMille, D. F. J. Kimball, A. Derevianko, and C. W. Clark, “Search for new physics with atoms and molecules,” Rev. Mod. Phys. 90
2018
Later among the works it cites.
X. Zhang, J. Zhong, B. Tang, X. Chen, L. Zhu, P. Huang, J. Wang, and M. Zhan, “Compact portable laser system for mobile cold atom gravimeters,” Appl. Opt. 57
2018
Later among the works it cites.
S.-K. Wang, Y. Zhao, W. Zhuang, T.-C. Li, S.-Q. Wu, J.-Y. Feng, and C.-J. Li, “Shift evaluation of the atomic gravimeter NIM-AGRb-1 and its comparison with FG5X,” Metrologia 55
2018
Later among the works it cites.
Y.-y. Xu, J.-f. Cui, K. Qi, X.-b. Deng, M.-k. Zhou, X.-c. Duan, and Z.-k. Hu, “On-site calibration of the raman laser absolute frequency for atom gravimeters,” Phys. Rev. A 97
2018
Later among the works it cites.
Y. Bidel, N. Zahzam, C. Blanchard, A. Bonnin, M. Cadoret, A. Bresson, D. Rouxel, and M. F. Lequentrec-Lalancette, “Absolute marine gravimetry with matter-wave interferometry,” Nat Commun 9
2018
Later among the works it cites.
V. Ménoret, P. Vermeulen, N. Le Moigne, S. Bonvalot, P. Bouyer, A. Landragin, and B. Desruelle, “Gravity measurements below 10 − 9 10^{-9} g with a transportable absolute quantum gravimeter,” Sci Rep 8
2018
Later among the works it cites.
L. Dong-Yun, C. Bing, Z. Yin, W. Bin, W. Xiao-Long, and L. Qiang, “Ultra-low frequency active vibration control for cold atom gravimeter based on sliding-mode robust algorithm,” Acta Physica Sinica 67
2018
Later among the works it cites.
B. Fang, N. Mielec, D. Savoie, M. Altorio, A. Landragin, and R. Geiger, “Improving the phase response of an atom interferometer by means of temporal pulse shaping,” New J. Phys 20
2018
Later among the works it cites.
R. Karcher, A. Imanaliev, S. Merlet, and F. Pereira Dos Santos, “Improving the accuracy of atom interferometers with ultracold sources,” New J. Phys 20
2018
Later among the works it cites.
S. Schlamminger, Redefining the Kilogram and Other Units (IOP Publishing, 2018)
2018
Later among the works it cites.
Z.-W. Yao, S.-B. Lu, R.-B. Li, J. Luo, J. Wang, and M.-S. Zhan, “Calibration of atomic trajectories in a large-area dual-atom-interferometer gyroscope,” Phys. Rev. A 97
2018
Later among the works it cites.
D. Savoie, M. Altorio, B. Fang, L. A. Sidorenkov, R. Geiger, and A. Landragin, “Interleaved atom interferometry for high-sensitivity inertial measurements,” Sci Adv 4
2018
Later among the works it cites.
Y. N. Korkishko, V. A. Fedorov, V. E. Prilutskiy, V. G. Ponomarev, I. V. Fedorov, S. M. Kostritskii, I. V. Morev, D. V. Obuhovich, S. V. Prilutskiy, A. I. Zuev, and V. K. Varnakov, “High-precision inertial measurement unit imu-5000,” in 2018 IEEE International Symposium on Inertial Sensors and Systems (INERTIAL) (26-2) pp. 1–4
2018
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F. Delhaye, “Hrg by safran: The game-changing technology,” in 2018 IEEE International Symposium on Inertial Sensors and Systems (INERTIAL) (26-2) pp. 1–4
2018
Later among the works it cites.
P. Cheiney, L. Fouché, S. Templier, F. Napolitano, B. Battelier, P. Bouyer, and B. Barrett, “Navigation-compatible hybrid quantum accelerometer using a kalman filter,” Phys. Rev. Applied 10
2018
Later among the works it cites.
A. Bonnin, C. Diboune, N. Zahzam, Y. Bidel, M. Cadoret, and A. Bresson, “New concepts of inertial measurements with multi-species atom interferometry,” Appl. Phys. B 124
2018
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R. H. Parker, C. Yu, W. Zhong, B. Estey, and H. Müller, “Measurement of the fine-structure constant as a test of the Standard Model,” Science 360
2018
Later among the works it cites.
B. Canuel, A. Bertoldi, L. Amand, E. P. d. Borgo, T. Chantrait, C. Danquigny, M. D. Álvarez, B. Fang, A. Freise, R. Geiger, J. Gillot, S. Henry, J. Hinderer, D. Holleville, J. Junca, G. Lefévre, M. Merzougui, N. Mielec, T. Monfret, S. Pelisson, M. Prevedelli, S. Reynaud, I. Riou, Y. Rogister, S. Rosat, E. Cormier, A. Landragin, W. Chaibi, S. Gaffet, and P. Bouyer, “Exploring gravity with the MIGA large scale atom interferometer,” Sci Rep 8
2018
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B. Plotkin-Swing, D. Gochnauer, K. E. McAlpine, E. S. Cooper, A. O. Jamison, and S. Gupta, “Three-path atom interferometry with large momentum separation,” Phys. Rev. Lett. 121
2018
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