A. Al-masoudi, S. Dörscher, S. Häfner, U. Sterr, and C. Lisdat, Noise and instability of an optical lattice clock, Physical Review A, vol.92, issue.6, p.63814, 2015.
DOI : 10.1103/PhysRevA.79.061401

D. W. Allan, Statistics of atomic frequency standards, Proceedings of the IEEE, pp.221-230, 1966.
DOI : 10.1109/PROC.1966.4634

K. Beloy, N. Hinkley, N. B. Phillips, J. A. Sherman, M. Schioppo et al., Room-Temperature Blackbody Stark Uncertainty, Physical Review Letters, vol.113, issue.26, p.260801, 2014.
DOI : 10.1038/nphys3137

M. C. Bigeon, Probabilit?? de transition de la raie 61S0 - 63 P0 du mercure, Journal de Physique, vol.4, issue.1, p.51, 1967.
DOI : 10.1051/jphysrad:01959002007065700

S. Blatt, A. D. Ludlow, G. K. Campbell, J. W. Thomsen, T. Zelevinsky et al., Optical Lattice Clocks, Physical Review Letters, vol.15, issue.14, p.140801, 2008.
DOI : 10.1103/PhysRevA.76.062104

URL : https://hal.archives-ouvertes.fr/hal-01329688

S. Blatt, J. W. Thomsen, G. K. Campbell, A. D. Ludlow, M. D. Swallows et al., Rabi spectroscopy and excitation inhomogeneity in a one-dimensional optical lattice clock, Physical Review A, vol.80, issue.5, p.52703, 2009.
DOI : 10.1103/PhysRev.87.807

B. J. Bloom, T. L. Nicholson, J. R. Williams, S. L. Campbell, M. Bishof et al., An optical lattice clock with accuracy and stability at the 10???18 level, Nature, vol.4, issue.7486, pp.50671-75, 2014.
DOI : 10.1007/s00340-012-4952-6

J. G. Bohnet, Z. Chen, J. M. Weiner, D. Meiser, M. J. Holland et al., A steadystate superradiant laser with less than one intracavity photon, Nature, issue.7392, pp.48478-81, 2012.

G. K. Campbell, M. M. Boyd, J. W. Thomsen, M. J. Martin, S. Blatt et al., Probing Interactions Between Ultracold Fermions, Science, vol.65, issue.15, pp.324360-363, 2009.
DOI : 10.1103/PhysRevLett.99.153601

S. L. Campbell, A Fermi-degenerate three-dimensional optical lattice clock, Science, vol.358, issue.6359, 2017.
DOI : 10.1103/PhysRevD.15.9

S. L. Campbell, R. B. Hutson, G. E. Marti, A. Goban, N. Darkwah-oppong et al., A Fermi-degenerate threedimensional optical lattice clock, 2017.

J. Chen, S. M. Brewer, C. W. Chou, D. J. Wineland, D. R. Leibrandt et al., Sympathetic ground state cooling and time-dilation shifts in an 27 Al + optical clock, Phys. Rev

C. W. Chou, D. B. Hume, J. C. Koelemeij, D. J. Wineland, and T. Rosenband, Optical Clocks, Physical Review Letters, vol.71, issue.7, p.70802, 2010.
DOI : 10.1103/PhysRevLett.94.230801

C. W. Chou, D. B. Hume, T. Rosenband, and D. J. Wineland, Optical Clocks and Relativity, Science, vol.47, issue.5, pp.1630-1633, 2010.
DOI : 10.1103/PhysRevA.47.3554

Y. Colombe, D. H. Slichter, A. C. Wilson, D. Leibfried, and D. J. Wineland, Single-mode optical fiber for high-power, low-loss UV transmission, Optics Express, vol.22, issue.16, pp.2219783-19793, 2014.
DOI : 10.1364/OE.22.019783

J. Dalibard, Collisional dynamics of ultra-cold atomic gases, Bose-Einstein Condensation in Atomic Gases, Proceedings of the International School of Physics " Enrico Fermi, pp.321-349

M. Inguscio, S. Stringari, C. E. Wieman17-]-s, R. Dawkins, M. Chicireanu et al., An ultra-stable referenced interrogation system in the deep ultraviolet for a mercury optical lattice clock, Applied Physics B, vol.99, issue.1, pp.41-46, 1999.

C. Degenhardt, T. Nazarova, C. Lisdat, H. Stoehr, U. Sterr et al., Influence of Chirped Excitation Pulses in an Optical Clock With Ultracold Calcium Atoms, IEEE Transactions on Instrumentation and Measurement, vol.54, issue.2, pp.771-775, 2005.
DOI : 10.1109/TIM.2004.843388

H. Dehmelt, Experiments with an isolated subatomic particle at rest, Reviews of Modern Physics, vol.31, issue.3, pp.525-530, 1990.
DOI : 10.1103/PhysRevLett.31.1279

P. Delva, J. Lodewyck, S. Bilicki, E. Bookjans, G. Vallet et al., Test of Special Relativity Using a Fiber Network of Optical Clocks, Physical Review Letters, vol.118, issue.22, p.221102, 2017.
DOI : 10.1103/PhysRevD.91.015015

URL : https://hal.archives-ouvertes.fr/hal-01491475

G. Dick, C. Inst, . Tech, . Jet, and . Lab, Local oscillator induced instabilities in trapped ion frequency standards, 1987.

F. Diedrich, J. C. Bergquist, W. M. Itano, and D. J. Wineland, Laser Cooling to the Zero-Point Energy of Motion, Physical Review Letters, vol.46, issue.4, pp.403-406, 1989.
DOI : 10.1063/1.321602

P. A. Dirac, A New Basis for Cosmology, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.165, issue.921, pp.199-208, 1938.
DOI : 10.1098/rspa.1938.0053

S. Falke, N. Lemke, C. Grebing, B. Lipphardt, S. Weyers et al., A strontium lattice clock with 3×10 ?17 inaccuracy and its frequency, New Journal of Physics, issue.7, p.16073023, 2014.

V. Flambaum and V. Dzuba, Search for variation of the fundamental constants in atomic, molecular, and nuclear spectra, Canadian Journal of Physics, vol.76, issue.1, pp.25-33, 2009.
DOI : 10.1103/PhysRevA.76.062104

K. Gibble, Decoherence and Collisional Frequency Shifts of Trapped Bosons and Fermions, Physical Review Letters, vol.103, issue.11, p.113202, 2009.
DOI : 10.1103/PhysRevLett.103.063001

K. Gibble, Scattering of Cold-Atom Coherences by Hot Atoms: Frequency Shifts from Background-Gas Collisions, Physical Review Letters, vol.110, issue.18, p.180802, 2013.
DOI : 10.1002/9780470143582.ch3

R. M. Godun, P. B. Nisbet-jones, J. M. Jones, S. A. King, L. A. Johnson et al., and Constraints on the Time Variation of Fundamental Constants, Physical Review Letters, vol.56, issue.21, p.210801, 2014.
DOI : 10.1103/PhysRevLett.113.210802

T. Gould and T. Bucko, Coefficients and Dipole Polarizabilities for All Atoms and Many Ions in Rows 1???6 of the Periodic Table, Journal of Chemical Theory and Computation, vol.12, issue.8, pp.3603-3613, 2016.
DOI : 10.1021/acs.jctc.6b00361

R. Grimm, M. Weidemüllerweidem¨weidemüller, and Y. B. Ovchinnikov, Optical Dipole Traps for Neutral Atoms, Advances In Atomic, Molecular, and Optical Physics, vol.42, pp.95-170, 2000.
DOI : 10.1016/S1049-250X(08)60186-X

G. Grynberg and C. Robilliard, Cold atoms in dissipative optical lattices, Physics Reports, vol.355, issue.5-6, pp.335-451, 2001.
DOI : 10.1016/S0370-1573(01)00017-5

J. Guéna, . Abgrall, S. Clairon, and . Bize, Contributing to TAI with a secondary representation of the SI second, Metrologia, vol.51, issue.1, p.108, 2014.
DOI : 10.1088/0026-1394/51/1/108

J. Guéna, M. Abgrall, D. Rovera, P. Laurent, B. Chupin et al., Progress in atomic fountains at LNE ? SYRTE. Ultrasonics, Ferroelectrics, and Frequency Control, P E Pottie, and G Grosche. First international comparison of fountain primary frequency standards via a long distance optical fiber link. Metrologia, pp.391-409, 2012.

H. Hachisu, K. Miyagishi, S. G. Porsev, A. Derevianko, V. D. Ovsiannikov et al., Trapping of Neutral Mercury Atoms and Prospects for Optical Lattice Clocks, Physical Review Letters, vol.6, issue.5, p.53001, 2008.
DOI : 10.1103/PhysRevLett.97.130801

D. M. Harber, H. J. Lewandowski, J. M. Mcguirk, and E. A. Cornell, Effect of cold collisions on spin coherence and resonance shifts in a magnetically trapped ultracold gas, Physical Review A, vol.47, issue.5, p.53616, 2002.
DOI : 10.1103/PhysRevA.47.3554

K. Lemke, M. Beloy, C. W. Pizzocaro, A. D. Oates, and . Ludlow, An atomic clock with 10 ?18 instability, Science, issue.6151, pp.3411215-1218, 2013.

N. Huntemann, B. Lipphardt, . Chr, V. Tamm, S. Gerginov et al., and Cs Atomic Clocks, Physical Review Letters, vol.80, issue.21, p.210802, 2014.
DOI : 10.1103/PhysRevLett.113.210801

N. Huntemann, C. Sanner, B. Lipphardt, . Chr, E. Tamm et al., Systematic Uncertainty, Physical Review Letters, vol.116, issue.6, p.63001, 2016.
DOI : 10.1063/1.4930037

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.42, issue.5, pp.3554-3570, 1993.
DOI : 10.1103/PhysRevA.42.3726

R. J. ´-auregui, N. Poli, G. Roati, and G. Modugno, Anharmonic parametric excitation in optical lattices, Physical Review A, vol.82, issue.3, p.33403, 2001.
DOI : 10.1063/1.3058020

B. Jian, A. Dubé, and . Madej, Sr+ atomic clock, Journal of Physics: Conference Series, vol.723, issue.1, p.12023, 2016.
DOI : 10.1088/1742-6596/723/1/012023

H. Katori, SPECTROSCOPY OF STRONTIUM ATOMS IN THE LAMB-DICKE CONFINEMENT, Frequency Standards and Metrology, p.323, 2001.
DOI : 10.1142/9789812777713_0036

H. Katori, V. D. Ovsiannikov, S. I. Marmo, and V. G. Palchikov, Strategies for reducing the light shift in atomic clocks, Physical Review A, vol.91, issue.5, p.52503, 2015.
DOI : 10.1103/PhysRevA.64.051403

H. Katori, M. Takamoto, V. G. , and V. D. Ovsiannikov, Ultrastable Optical Clock with Neutral Atoms in an Engineered Light Shift Trap, Physical Review Letters, vol.141, issue.17, p.173005, 2003.
DOI : 10.1088/1464-4266/5/2/370

M. Kazda, V. Gerginov, N. Huntemann, B. Lipphardt, and S. Weyers, Phase Analysis for Frequency Standards in the Microwave and Optical Domains, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, vol.63, issue.7, pp.970-974, 2016.
DOI : 10.1109/TUFFC.2016.2515759

J. Keller, . Burgermeister, . Kalincev, T. Kiethe, and . Mehlstäubler, level, Journal of Physics: Conference Series, vol.723, issue.1, p.12027, 2016.
DOI : 10.1088/1742-6596/723/1/012027

URL : https://hal.archives-ouvertes.fr/jpa-00247661

T. Kessler, C. Hagemann, C. Grebing, T. Legero, U. Sterr et al., A sub-40-mHz-linewidth laser based on a silicon single-crystal optical cavity, Nature Photonics, vol.2, issue.10, pp.687-692, 2012.
DOI : 10.1364/JOSAB.2.001527

S. B. Koller, J. Grotti, . St, A. Vogt, S. Al-masoudi et al., Uncertainty, Physical Review Letters, vol.10, issue.7, p.73601, 2017.
DOI : 10.1007/s00340-012-4952-6

URL : https://hal.archives-ouvertes.fr/hal-00773605

S. G. Safronova and . Porsev, Towards a Mg lattice clock: Observation of the 1 S 0 ? 3 P 0 transition and determination of the magic wavelength, Phys. Rev. Lett, vol.115, p.240801, 2015.

R. , L. Targat, L. Lorini, Y. L. Coq, M. Zawada et al., Experimental realization of an optical second with strontium lattice clocks, Nat Commun, pp.4-2013

D. Leibfried, R. Blatt, C. Monroe, and D. Wineland, Quantum dynamics of single trapped ions, Reviews of Modern Physics, vol.44, issue.1, pp.281-324, 2003.
DOI : 10.1063/1.881293

N. D. Lemke, A. D. Ludlow, Z. W. Barber, T. M. Fortier, S. A. Diddams et al., Spin-1/2 optical lattice clock, Phys. Rev. Lett, vol.103, p.63001, 2009.
DOI : 10.21236/AD1007299

N. D. Lemke, J. Von-stecher, J. A. Sherman, A. M. Rey, C. W. Oates et al., -Wave Cold Collisions in an Optical Lattice Clock, Physical Review Letters, vol.107, issue.10, p.103902, 2011.
DOI : 10.1103/PhysRevLett.106.250801

. Pottie, A clock network for geodesy and fundamental science, Nature Communications, vol.7, p.12443, 2016.

J. Lodewyck, S. Bilicki, E. Bookjans, J. Robyr, C. Shi et al., Optical to microwave clock frequency ratios with a nearly continuous strontium optical lattice clock, Metrologia, vol.53, issue.4, p.1123, 2016.
DOI : 10.1088/0026-1394/53/4/1123

A. D. Ludlow, T. Zelevinsky, G. K. Campbell, S. Blatt, M. M. Boyd et al., Sr Lattice Clock at 1 x 10-16 Fractional Uncertainty by Remote Optical Evaluation with a Ca Clock, Science, vol.8, issue.22, pp.3191805-1808, 2008.
DOI : 10.1088/1367-2630/8/8/159

A. D. Ludlow, M. M. Boyd-ye, E. Peik, and P. O. Schmidt, Optical atomic clocks, Reviews of Modern Physics, vol.304, issue.2, pp.637-701, 2015.
DOI : 10.1103/PhysRevA.85.042112

URL : https://hal.archives-ouvertes.fr/hal-01329728

M. D. Lukin, M. Fleischhauer, R. Cote, L. M. Duan, D. Jaksch et al., Dipole Blockade and Quantum Information Processing in Mesoscopic Atomic Ensembles, Physical Review Letters, vol.84, issue.3, p.37901, 2001.
DOI : 10.1103/PhysRevLett.84.4749

C. D. Marciniak, H. B. Ball, A. T. Hung, and M. J. Biercuk, Towards fully commercial, UV-compatible fiber patch cords, Optics Express, vol.25, issue.14, pp.2515643-15661, 2017.
DOI : 10.1364/OE.25.015643

J. Michael and . Martin, Quantum Metrology and Many-Body Physics: Pushing the Frontier of the Optical Lattice Clock, 2013.

J. J. Mcferran, D. V. Magalhaes, C. Mandache, J. Millo, W. Zhang et al., Laser locking of the 199 Hg 1 S 0 ? 3 P 0 transition with 5.7 × 10 ?15 fractional frequency instability, Opt. Lett, issue.17, pp.373477-3479, 2012.

J. J. Mcferran, L. Yi, S. Mejri, and S. Bize, Sub-Doppler cooling of fermionic Hg isotopes in a magneto-optical trap, Optics Letters, vol.35, issue.18, pp.3078-3080, 2010.
DOI : 10.1364/OL.35.003078

D. Meiser, J. Ye, D. R. Carlson, and M. J. Holland, Prospects for a Millihertz-Linewidth Laser, Physical Review Letters, vol.17, issue.16, p.163601, 2009.
DOI : 10.1143/JPSJ.17.1100

S. Mejri, J. J. Mcferran, L. Yi, Y. L. Coq, and S. Bize, Ultraviolet laser spectroscopy of neutral mercury in a one-dimensional optical lattice, Physical Review A, vol.84, issue.3, p.32507, 2011.
DOI : 10.1103/PhysRevLett.106.213002

H. J. Metcalf and P. Van-der-straten, Laser cooling and trapping of atoms, Journal of the Optical Society of America B, vol.20, issue.5, pp.887-908, 2003.
DOI : 10.1364/JOSAB.20.000887

T. Middelmann, S. Falke, C. Lisdat, and U. Sterr, High Accuracy Correction of Blackbody Radiation Shift in an Optical Lattice Clock, Physical Review Letters, vol.120, issue.26, p.263004, 2012.
DOI : 10.1063/1.3077727

J. Millo, D. V. Magalhães, C. Mandache, Y. Le-coq, E. M. English et al., Ultrastable lasers based on vibration insensitive cavities, Physical Review A, vol.79, issue.5, p.53829, 2009.
DOI : 10.1007/BF00702605

J. Peter, D. B. Mohr, B. N. Newell, and . Taylor, CODATA recommended values of the fundamental physical constants: 2014, Rev. Mod. Phys, vol.88, p.35009, 2016.

N. Nemitz, T. Ohkubo, M. Takamoto, I. Ushijima, M. Das et al., Frequency ratio of Yb and Sr clocks with 5????????10???17 uncertainty at 150???seconds averaging time, Nature Photonics, vol.4, issue.4, pp.258-261, 2016.
DOI : 10.1364/OE.20.013769

T. L. Nicholson, S. L. Campbell, R. B. Hutson, G. E. Marti, B. J. Bloom et al., Systematic evaluation of an atomic clock at 2 ?? 10???18 total uncertainty, Nature Communications, vol.331, 2015.
DOI : 10.1126/science.1196442

D. Nicolodi, B. Argence, W. Zhang, R. L. Targat, G. Santarelli et al., Spectral purity transfer between optical wavelengths at the 10???18 level, Nature Photonics, vol.8, issue.3, pp.219-223, 2014.
DOI : 10.1364/OL.19.001777

URL : https://hal.archives-ouvertes.fr/hal-00995888

A. Matthew, M. N. Norcia, J. R. Winchester, J. K. Cline, and . Thompson, Superradiance on the millihertz linewidth strontium clock transition, Science Advances, vol.2, issue.10, p.2016

N. Ohmae, N. Kuse, M. E. Fermann, and H. Katori, All-polarization-maintaining, single-port Er:fiber comb for high-stability comparison of optical lattice clocks, Applied Physics Express, vol.10, issue.6, p.62503, 2017.
DOI : 10.7567/APEX.10.062503

V. D. Ovsiannikov, S. I. Marmo, V. G. Palchikov, and H. Katori, Higher-order effects on the precision of clocks of neutral atoms in optical lattices, Physical Review A, vol.64, issue.4, p.43420, 2016.
DOI : 10.1103/PhysRevLett.115.240801

V. Ovsyannikov, G. Vitalii, . Pal-'chikov, M. Katori, and . Takamoto, Polarisation and dispersion properties of light shifts in ultrastable optical frequency standards, Quantum Electronics, vol.36, issue.1, p.3, 2006.
DOI : 10.1070/QE2006v036n01ABEH013098

W. Paul, Electromagnetic traps for charged and neutral particles, Reviews of Modern Physics, vol.30, issue.3, pp.531-540, 1990.
DOI : 10.1063/1.1735165

F. Pereira-dos-santos, H. Marion, S. Bize, Y. Sortais, A. Clairon et al., Controlling the Cold Collision Shift in High Precision Atomic Interferometry, Physical Review Letters, vol.45, issue.23, p.233004, 2002.
DOI : 10.1109/19.918177

URL : https://hal.archives-ouvertes.fr/hal-00001663

M. Petersen, R. Chicireanu, S. T. Dawkins, D. V. Magalhães, C. Mandache et al., Optical Clock Transition in Laser-Cooled Fermionic Isotopes of Neutral Mercury, Physical Review Letters, vol.42, issue.18, p.183004, 2008.
DOI : 10.1364/JOSA.42.000056

URL : https://hal.archives-ouvertes.fr/hal-00303326

M. Michael and . Petersen, Laser-cooling of Neutral Mercury and Laserspectroscopy of the 1 S 0 ? 3 P 0 optical clock transition, 2009.

G. Petit, F. Arias, and G. Panfilo, International atomic time: Status and future challenges, Comptes Rendus Physique, vol.16, issue.5, pp.480-488, 2015.
DOI : 10.1016/j.crhy.2015.03.002

S. G. Porsev, U. I. Safronova, and M. S. Safronova, A theoretical study of the g-factor of the 6s6p 3 P 0 state of mercury. ArXiv e-prints, 2017.

A. Quessada, P. Richard, I. Kovacich, A. Courtillot, G. Clairon et al., The Dick effect for an optical frequency standard, Journal of Optics B: Quantum and Semiclassical Optics, vol.5, issue.2, p.150, 2003.
DOI : 10.1088/1464-4266/5/2/373

E. L. Raab, M. Prentiss, A. Cable, S. Chu, and D. E. Pritchard, Trapping of Neutral Sodium Atoms with Radiation Pressure, Physical Review Letters, vol.55, issue.23, pp.2631-2634, 1987.
DOI : 10.1103/PhysRevLett.55.48

L. Ricci, M. Weidemüllerweidem¨weidemüller, T. Esslinger, A. Hemmerich, C. Zimmermann et al., A compact grating-stabilized diode laser system for atomic physics, Optics Communications, vol.117, issue.5-6, pp.541-549, 1995.
DOI : 10.1016/0030-4018(95)00146-Y

F. Riehle, Atomic and Molecular Frequency References, Frequency Standards: Basics and Applications, pp.117-165
DOI : 10.1002/3527605991.ch5

F. Riehle, Preparation and Interrogation of Atoms and Molecules, in Frequency Standards: Basics and Applications, pp.167-202, 2005.

F. Riehle, Towards a redefinition of the second based on optical atomic clocks, Comptes Rendus Physique, vol.16, issue.5, pp.506-515, 2015.
DOI : 10.1016/j.crhy.2015.03.012

D. S. Erling-riis, K. A. Weiss, S. Moler, and . Chu, Atom funnel for the production of a slow, high-density atomic beam, Physical Review Letters, vol.6, issue.14, pp.1658-1661, 1990.
DOI : 10.1364/JOSAB.6.002155

T. Rosenband, D. B. Hume, P. O. Schmidt, C. W. Chou, A. Brusch et al., Frequency ratio of

+. Al, Hg + single-ion optical clocks; metrology at the 17th decimal place, Science, issue.5871, pp.3191808-1812, 2008.

G. Rovera, . Bize, . Chupin, P. Guéna, . Laurent et al., UTC(OP) based on LNE-SYRTE atomic fountain primary frequency standards, Metrologia, vol.53, issue.3, pp.53-81, 2016.
DOI : 10.1088/0026-1394/53/3/S81

G. Santarelli, C. Audoin, A. Makdissi, P. Laurent, G. J. Dick et al., Frequency stability degradation of an oscillator slaved to a periodically interrogated atomic resonator, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol.45, issue.4, pp.887-894, 1998.
DOI : 10.1109/58.710548

G. Santarelli, G. Governatori, D. Chambon, M. Lours, P. Rosenbusch et al., Switching atomic fountain clock microwave interrogation signal and high-resolution phase measurements, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol.56, issue.7, pp.561319-1326, 2009.
DOI : 10.1109/TUFFC.2009.1188

G. Santarelli, . Ph, P. Laurent, A. Lemonde, A. G. Clairon et al., Quantum Projection Noise in an Atomic Fountain: A High Stability Cesium Frequency Standard, Physical Review Letters, vol.80, issue.23, pp.4619-4622, 1999.
DOI : 10.1103/PhysRevLett.80.3487

L. De-sarlo, . Favier, S. Tyumenev, M. Bize, . Schioppo et al., A mercury optical lattice clock at LNE ? SYRTE Ultrastable optical clock with two cold-atom ensembles, Journal of Physics: Conference Series Nat Photon, vol.723, issue.111, pp.1201748-52, 2016.

J. A. Sherman, N. D. Lemke, N. Hinkley, M. Pizzocaro, R. W. Fox et al., High-Accuracy Measurement of Atomic Polarizability in an Optical Lattice Clock, Physical Review Letters, vol.108, issue.15, p.153002, 2012.
DOI : 10.1103/PhysRevLett.82.1831

M. D. Swallows, M. Bishof, Y. Lin, S. Blatt, M. J. Martin et al., Suppression of Collisional Shifts in a Strongly Interacting Lattice Clock, Science, vol.15, issue.8, pp.3311043-1046, 2011.
DOI : 10.1103/PhysRevD.15.9

M. Takamoto, F. Hong, R. Higashi, Y. Fujii, M. Imae et al., Improved frequency measurement of a one-dimensional optical lattice clock with a spinpolarized fermionic 87 Sr isotope, Journal of the Physical Society of Japan, issue.10, p.75104302, 2006.

M. Takamoto and H. Katori, Spectroscopy of the 1 S 0 ? 3 P 0 clock transition of 87 Sr in an optical lattice, Phys. Rev

M. Takamoto, T. Takano, and H. Katori, Frequency comparison of optical lattice clocks beyond the Dick limit, Nature Photonics, vol.19, issue.5, pp.288-292, 2011.
DOI : 10.1364/OL.19.001777

T. Takano, R. Mizushima, and H. Katori, Sr optical lattice clock by sharing perturbations, Applied Physics Express, vol.10, issue.7, p.72801, 2017.
DOI : 10.7567/APEX.10.072801

T. Takano, M. Takamoto, I. Ushijima, N. Ohmae, T. Akatsuka et al., Geopotential measurements with synchronously linked optical lattice clocks, Nature Photonics, vol.99, issue.10, pp.662-666, 2016.
DOI : 10.1038/ncomms6934

H. R. Telle, B. Lipphardt, and J. Stenger, Kerr-lens, mode-locked lasers as transfer oscillators for optical frequency measurements, Applied Physics B: Lasers and Optics, vol.74, issue.1, pp.1-6, 2002.
DOI : 10.1007/s003400100735

R. Tyumenev, . Favier, . Bilicki, . Bookjans, . Le-targat et al., Comparing a mercury optical lattice clock with microwave and optical frequency standards, New Journal of Physics, vol.18, issue.11, p.18113002, 2016.
DOI : 10.1088/1367-2630/18/11/113002

URL : https://hal.archives-ouvertes.fr/hal-01414967

R. Tyumenev, Mercury lattice clock: from the Lamb-Dicke spectroscopy to stable clock operation, 2015.
URL : https://hal.archives-ouvertes.fr/tel-01243987

I. Ushijima, M. Takamoto, M. Das, T. Ohkubo, and H. Katori, Cryogenic optical lattice clocks, Nature Photonics, vol.60, issue.3, pp.185-189, 2015.
DOI : 10.1109/TIM.2010.2088470

J. Uzan, Varying Constants, Gravitation and Cosmology, Living Reviews in Relativity, vol.81, issue.083003, 2011.
DOI : 10.1103/PhysRevD.81.064018

. Thomsen, Observation of motion-dependent nonlinear dispersion with narrow-linewidth atoms in an optical cavity, Phys. Rev. Lett, vol.114, p.93002, 2015.

D. J. Wineland and W. M. Itano, Laser cooling of atoms, Physical Review A, vol.14, issue.4, pp.1521-1540, 1979.
DOI : 10.1103/PhysRevA.14.1683

D. J. Wineland, C. Monroe, W. M. Itano, D. Leibfried, B. E. King et al., Experimental issues in coherent quantum-state manipulation of trapped atomic ions, Journal of Research of the National Institute of Standards and Technology, vol.103, issue.3, pp.259-328, 1998.
DOI : 10.6028/jres.103.019

K. Yamanaka, N. Ohmae, I. Ushijima, M. Takamoto, H. Katori-ye et al., Frequency ratio of 199 Hg and 87 Sr optical lattice clocks beyond the SI limit Delivery of high-stability optical and microwave frequency standards over an optical fiber network, Phys. Rev. Lett. J. Opt. Soc. Am. B, vol.114119, issue.207, pp.2308011459-1467, 2003.

L. Yi, S. Mejri, J. J. Mcferran, Y. L. Coq, and S. Bize, Clock Transition, Physical Review Letters, vol.9, issue.7, p.73005, 2011.
DOI : 10.1103/PhysRevLett.76.4512