F. Riehle, K. Th, A. Witte, J. Helmcke, B. Ch et al., Optical Ramsey spectroscopy in a rotating frame: Sagnac effect in a matter-wave interferometer, Physical Review Letters, vol.67, issue.2, p.177, 1991.
DOI : 10.1103/PhysRevLett.67.177

A. Peters, K. Y. Chung, and C. S. , High-precision gravity measurements using atom interferometry, Metrologia, vol.38, issue.1, p.25, 2001.
DOI : 10.1088/0026-1394/38/1/4

A. Clairon, L. Ph, G. Santarelli, S. Ghezali, S. Lea et al., A cesium fountain frequency standard: preliminary results, IEEE Transactions on Instrumentation and Measurement, vol.44, issue.2, p.128, 1995.
DOI : 10.1109/19.377790

P. Storey and C. Cohen-tannoudji, The Feynman path integral approach to atomic interferometry. A??tutorial, Journal de Physique II, vol.4, issue.11, pp.1999-2027, 1994.
DOI : 10.1051/jp2:1994103

URL : https://hal.archives-ouvertes.fr/jpa-00248106

M. Kasevich and C. S. , Measurement of the gravitational acceleration of an atom with a light-pulse atom interferometer, Applied Physics B Photophysics and Laser Chemistry, vol.65, issue.5, p.321, 1992.
DOI : 10.1007/BF00325375

C. Antoine, B. Ch, and J. , Exact phase shifts for atom interferometry, Physics Letters A, vol.306, issue.5-6, p.277, 2002.
DOI : 10.1016/S0375-9601(02)01625-0

URL : https://hal.archives-ouvertes.fr/hal-00009500

G. Santarelli, A. Clairon, S. Lea, and G. Tino, Heterodyne optical phase-locking of extended-cavity semiconductor lasers at 9 GHz, Optics Communications, vol.104, issue.4-6, p.339, 1994.
DOI : 10.1016/0030-4018(94)90567-3

C. Antoine, C. J. Bordé-antoine, and C. J. Bordé, Exact phase shifts for atom interferometry Quantum theory of atomic clocks and gravito-inertial sensors: an update, Antoine, Contribution à la théorie des interféromètres atomiques, pp.277-199, 1999.

J. Baudon, R. Mathevet, J. Robert, and A. Interferometry, Atomic interferometry, Thèse de doctorat de l'Université Paris VI, p.173, 1997.
DOI : 10.1088/0953-4075/32/15/201

URL : https://hal.archives-ouvertes.fr/hal-00335495

D. Bréant, G. Bassi, and . Scoles, Optical Ramsey fringes with travelling wavesBordé 89] Ch Atomic interferometry with internal state labellingBordé 91] Ch. J. Bordé, Propagation of laser beams and of atomic systems, Les Houches, session LIII, Fundamental systems in quantum optics, pp.1836-1846, 1984.

. J. Ch, A. Bordé, . Interferometry, L. Laser-spectroscopy, X. Spectroscopy et al., Matter-wave interferometers: a synthetic approachBordé 01] Ch. J. Bordé, Theoretical tools for atom optics and interferometry Atomic clocks and inertial sensorsBordé 02 ttt] Ch. J. Bordé, Lecture notes for a mini-course on an elementary quantum theory of atom-wave beam splitters: the ttt theorem Quantum theory of atom-wave beam splitters and applications to multidimensional atomic gravito-inertial sensors, C.R. Acad. Sci. Paris Ch. J. Bordé J. Bordé Gen. Rel. Grav, vol.239, issue.362, pp.509-512, 1991.

O. Carnal and J. Mlynek, Young???s double-slit experiment with atoms: A simple atom interferometer, Physical Review Letters, vol.66, issue.21, p.2689, 1991.
DOI : 10.1103/PhysRevLett.66.2689

A. Leduc, C. Landragin, M. Y. Audoin, R. Bernard, J. Besson et al., A Cesium fountain frequency standard : preliminary results, La mesure de la fréquence des oscillateurs, p.128, 1991.

C. Cohen-tannoudji, Cours de physique atomique et moléculaire, 1992.
DOI : 10.4000/books.cdf.687

URL : http://annuaire-cdf.revues.org/1067

R. Colella, A. W. Overhauser, and S. A. Werner, Observation of Gravitationally Induced Quantum Interference, Physical Review Letters, vol.34, issue.23, p.1472, 1975.
DOI : 10.1103/PhysRevLett.34.1472

J. Dalibard, C. Cohen-tannoudji, C. Davisson, L. H. Germer, B. Dubetsky et al., Laser cooling below the Doppler limit by polarization gradients: simple theoretical models, Journal of the Optical Society of America B, vol.6, issue.11, pp.2023-705, 1927.
DOI : 10.1364/JOSAB.6.002023

J. Fils, Réalisation et caractérisation d'un gyromètre à ondes de de Broglie, 2002.

J. Fils, F. Leduc, P. Bouyer, D. Holleville, N. Dimarcq et al., Influence of optical aberrations in an atomic gyroscope, soumis à Eur, Atom interferometer based on Bragg scattering from standing light waves, p.2638, 1995.

]. T. Gustavson-97, P. Gustavson, M. A. Bouyer, and . Kasevich, Precision Rotation Measurements with an Atom Interferometer Gyroscope, Physical Review Letters, vol.78, issue.11, p.2046, 1997.
DOI : 10.1103/PhysRevLett.78.2046

T. L. Gustavson, P. Bouyer, and M. A. Kasevich, A dual atomic beam matter-wave gyroscope, Proc. SPIE, p.62, 1998.

T. L. Gustavson, A. Landragin, and M. A. Kasevich, Rotation sensing with a dual atom-interferometer Sagnac gyroscope, Classical and Quantum Gravity, vol.17, issue.12, pp.1-1, 2000.
DOI : 10.1088/0264-9381/17/12/311

T. L. Gustavson, L. Hackermüller, S. Uttenthaler, K. Hornberger, E. Reiger et al., Precision rotation sensing using atom interferometry, Hackermüller 03] Wave nature of biomolecules and fluorofullerenes, p.90408, 2000.

D. Holleville, Conception et réalisation d'un gyromètre à atomes froids fondé sur l'effet Sagnac pour les ondes de matière, thèse de doctorat de l, 1994.

J. Ishikawa, F. Riehle, J. Helmcke, and C. J. Bordé, Strong-field effects in coherent saturation spectroscopy of atomic beams, Physical Review A, vol.49, issue.6, pp.6-4794, 1994.
DOI : 10.1103/PhysRevA.49.4794

W. M. Itano, J. C. Bergquist, J. J. Bollinger, J. M. Gilligan, D. J. Heinzen et al., Quantum projection noise: Population fluctuations in two-level systems, Physical Review A, vol.47, issue.5, p.3554, 1993.
DOI : 10.1103/PhysRevA.47.3554

M. Kasevich and S. Chu, Measurement of the gravitational acceleration of an atom with a light-pulse atom interferometer, Applied Physics B Photophysics and Laser Chemistry, vol.65, issue.5, 1991.
DOI : 10.1007/BF00325375

D. W. Keith, C. R. Ekstrom, Q. A. Turchette, and D. E. Pritchard, An interferometer for atoms, Physical Review Letters, vol.66, issue.21, p.2693, 1991.
DOI : 10.1103/PhysRevLett.66.2693

L. Landau, E. Lifschitz, E. Mécanique, . De, and . Paix, Landragin 97] A. Landragin, Réflexion d'atomes sur un miroir à onde évanescente : mesure de la force de Van der Waals et diffraction atomique, Thèse de doctorat de l'Université Paris XI (1997) [Landragin 02] A. Landragin, P. Featonby, Procédé et appareil de mesure de vitesse de rotation par interférométrie atomique, pp.2-1545402, 1969.

P. Lemonde, PHARAO : étude d'une horloge spatiale utilisant des atomes refroidis par laser : réalisation d'un prototype, Thèse de doctorat de l'Université Paris VI (1997) [Lense 18, Loyer 97] S. Loyer, Techniques dynamiques d'observation de la rotation de la Terre, p.156, 1918.

G. Lucas-leclin, W. M. Macek, T. M. Davis-jr, and G. B. Malykin, Rotation rate sensing with travelling-wave ring lasers The Sagnac effect : correct and incorrect explanations, Importance des propriétés spectrales des lasers pour les performances des horloges atomiques à pompage optique Search dor variations of fundamental constants using atomic fountain clocks, pp.67-1325, 1963.

J. M. Mcguirk, M. J. Snadden, and M. A. Kasevich, Large Area Light-Pulse Atom Interferometry, Physical Review Letters, vol.85, issue.21, p.4498, 2000.
DOI : 10.1103/PhysRevLett.85.4498

J. M. Mcguirck, G. T. Foster, J. B. Fixler, M. J. Snadden, and M. A. Kasevich, Sensitive absolute-gravity gradiometry using atom interferometry, Physical Review A, vol.65, issue.3, p.33608, 1997.
DOI : 10.1103/PhysRevA.65.033608

J. C. Mester, C. W. Everitt, B. W. Parkinson, and J. P. Turneaure, Gravity Probe B: Status and flight plans, Proc. Symposium on the Early Universe, 1994.

K. Moler, D. S. Weiss, M. Kasevich, and S. Chu, Theoretical analysis of velocity-selective Raman transitions High precision gravity measurements using atom interferometry, Phys. Rev. A, vol.45, issue.87, p.25, 1991.

E. Raab, M. Prentiss, A. Cable, S. Chu, and D. Pritchard, Trapping of Neutral Sodium Atoms with Radiation Pressure, Rasel 00] E. M. Rasel et al, HYPER : Hyper-Precision Cold Atom Interferometry In Space, ESA Assessment Study Report, p.2631, 1987.
DOI : 10.1103/PhysRevLett.59.2631

F. Riehle, . Th, A. Kisters, J. Witte, C. J. Helmcke et al., Optical Ramsey spectroscopy in a rotating frame: Sagnac effect in a matter-wave interferometer, Physical Review Letters, vol.67, issue.2, p.177, 1991.
DOI : 10.1103/PhysRevLett.67.177

G. Sagnac and L. , éther lumineux démontré par l'effet du vent relatif d'éther dans un interféromètre en rotation uniforme, Comptes rendus de l, Santarelli 96] G. Santarelli, Contribution à la réalisation d'une fontaine atomique, 1913.

Y. Sortais, Construction d'une fontaine double à atomes froids de 87 Rb et 133 Cs; étude des effets dépendant du nombre d'atomes dans une fontaine, Thèse de doctorat de l The Feynman path integral approach to atomic interferometry. A tutorial, J. Phys. II France, vol.4, 1994.

J. Stuhler, M. Fattori, T. Petelski, and G. M. Tino, MAGIA??using atom interferometry to determine the Newtonian gravitational constant, Journal of Optics B: Quantum and Semiclassical Optics, vol.5, issue.2, p.75, 2003.
DOI : 10.1088/1464-4266/5/2/361

Y. Torii, Y. Suzuki, M. Kozuma, T. Sugiura, T. Kuga et al., Mach-Zehnder Bragg interferometer for a Bose-Einstein condensate, Mach-Zehnder Bragg interferometer for a Bose- Einstein condensate, p.41602, 2000.
DOI : 10.1103/PhysRevA.61.041602

V. Vali and R. W. Shorthill, Fiber ring interferometer, Applied Optics, vol.15, issue.5, p.1099, 1976.
DOI : 10.1364/AO.15.001099

D. S. Weiss, B. C. Young, S. A. Chu, J. M. Wicht, E. Hensley et al., Precision measurement of ?/m Cs based on photon recoil using laser-cooled atoms and atomic interferometry, Proc. 6 th symposium on frequency standards and metrology Kasevich, S. Chu, Precision atom interferometry with light pulses, p.217, 1994.
DOI : 10.1007/BF01081393

P. Holleville, A. Bouyer, and . Landragin, Reaching the quantum noise limit in a high-sensitivity cold-atom inertial sensor, cf. Annexe D, p.136, 2003.