C. N. Cohen-tannoudji, Nobel Lecture: Manipulating atoms with photons, Reviews of Modern Physics, vol.70, pp.707-719, 1998.

W. Phillips, Nobel Lecture: Laser cooling and trapping of neutral atoms, Reviews of Modern Physics, vol.70, pp.721-741, 1998.

A. Ashkin, Trapping of Atoms by Resonance Radiation Pressure, Physical Review Letters, vol.40, pp.31-9007, 1978.

T. W. Hänsch and A. L. Schawlow, Cooling of gases by laser radiation, Optics Communications, vol.13, pp.68-69, 1975.

D. J. Wineland and H. G. Dehmelt, Principles of the stored ion calorimeter, Journal of Applied Physics, vol.46, pp.919-930, 1975.

D. William, H. Phillips, and . Metcalf, Laser Deceleration of an Atomic Beam, Physical Review Letters, vol.48, pp.31-9007, 1982.

S. Chu, Experimental observation of optically trapped atoms, In: Physical review letters, vol.57, pp.1079-7114, 1986.

. Raab, Trapping of neutral sodium atoms with radiation pressure, Physical review letters, vol.59, pp.1079-7114, 1987.

A. L. Migdall, First observation of magnetically trapped neutral atoms, Physical review letters, vol.54, pp.2596-2599, 1985.

M. H. Anderson, Observation of bose-einstein condensation in a dilute atomic vapor, Science 269, vol.5221, pp.36-8075, 1995.

K. B. Davis, Bose-Einstein condensation in a gas of sodium atoms, Physical review letters, vol.75, pp.3969-3973, 1995.

J. K. Thompson, G. Rempe, and H. J. Kimble, Observation of normal-mode splitting for an atom in an optical cavity, Physical review letters, vol.68, pp.1132-1135, 1992.

A. Furusawa, Unconditional quantum teleportation, Science, vol.282, pp.36-8075, 1998.

D. Leibfried, Quantum dynamics of single trapped ions, Reviews of Modern Physics, vol.75, pp.34-6861, 2003.

Y. Kaluzny, Observation of Self-Induced Rabi Oscillations in Two-Level Atoms Excited Inside a Resonant Cavity: The Ringing Regime of Superradiance, Physical Review Letters, vol.51, pp.31-9007, 1983.

J. Mckeever, Deterministic generation of single photons from one atom trapped in a cavity, Science, vol.303, pp.1992-1994, 2004.

A. Wallraff, Strong coupling of a single photon to a superconducting qubit using circuit quantum electrodynamics, Nature 431.7005, pp.162-167, 2004.

T. Niemczyk, Circuit quantum electrodynamics in the ultrastrongcoupling regime, Nature Physics, vol.6, pp.1745-2473, 2010.

J. Kelly, State preservation by repetitive error detection in a superconducting quantum circuit, Nature, vol.519, pp.66-69, 2015.

J. R. Petta, Coherent manipulation of coupled electron spins in semiconductor quantum dots, Science, vol.309, pp.2180-2184, 2005.

K. D. Petersson, Circuit quantum electrodynamics with a spin qubit, Nature, vol.490, pp.380-383, 2012.

J. J. Viennot, Coherent coupling of a single spin to microwave cavity photons, Science, vol.349, pp.408-411, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01310665

C. Langer, Long-lived qubit memory using atomic ions, Physical Review Letters, vol.95, pp.31-9007, 2005.

E. Schrödinger, Discussion of Probability Relations between Separated Systems, Mathematical Proceedings of the Cambridge Philosophical Society, vol.31, pp.555-563, 1935.

R. Horodecki, Quantum entanglement, Reviews of Modern Physics, vol.81, pp.34-6861, 2009.

A. Aspect, J. Dalibard, and G. Roger, Experimental Test of Bell's Inequalities Using Time-Varying Analyzers, Physical Review Letters, vol.49, pp.1804-1807, 1982.

B. Hensen, Loophole-free Bell inequality violation using electron spins separated by 1.3 kilometres, Nature, vol.526, pp.682-686, 2015.

Z. Cirac, Quantum Computations with Cold Trapped Ions, Physical review letters, vol.74, pp.1079-7114, 1995.

D. Loss and D. P. Divincenzo, Quantum computation with quantum dots, Physical Review A, vol.57, issue.1, pp.1050-2947, 1998.

R. Gerritsma, Quantum simulation of the Dirac equation, Nature, vol.463, pp.68-71, 2010.

I. Bloch, J. Dalibard, and S. Nascimbène, Quantum simulations with ultracold quantum gases, Nature Physics, vol.8, pp.1745-2473, 2012.

D. Bouwmeester, Experimental quantum teleportation, Nature, vol.390, pp.575-579, 1997.

K. Stannigel, Optomechanical transducers for long-distance quantum communication, Physical review letters 105, vol.22, pp.1079-7114, 2010.

U. Kitagawa, Squeezed spin states, Physical Review A, vol.47, pp.1050-2947, 1993.

F. Haas, Création d'états intriqués d'un ensemble d'atomes dans une cavité optique, 2014.

G. Barontini, Deterministic generation of multiparticle entanglement by quantum Zeno dynamics, Science, vol.349, pp.1317-1321, 2015.

G. Dubois, Preparation, manipulation and detection of single atoms on a chip, p.1, 2009.
URL : https://hal.archives-ouvertes.fr/tel-00593875

C. Cohen-tannoudji, J. Dupont-roc, and G. Grynberg, Atomphoton interactions: Basic processes and applications. Wiley science paperback series, pp.1-3, 2008.

C. Gerry and P. Knight, Introductory Quantum Optics, p.9780511791239, 2004.

E. T. Jaynes and F. W. Cummings, Comparison of quantum and semiclassical radiation theories with application to the beam maser, Proceedings of the IEEE, vol.51, pp.89-109, 1963.

I. D. Leroux, M. H. Schleier-smith, and V. Vuleti?, Implementation of cavity squeezing of a collective atomic spin, Physical review letters, vol.104, pp.1079-7114, 2010.

J. Robert and . Lewis-swan, Robust Spin Squeezing via Photon-Mediated Interactions on an Optical Clock Transition, Physical review letters, vol.121, pp.1079-7114, 2018.

H. Tanji-suzuki, Interaction between Atomic Ensembles and Optical Resonators: Classical Description, vol.4, 2011.

E. M. Purcell, Proceedings of the American Physical Society". In: Physical Review, vol.69, p.4, 1946.

F. T. Arecchi, Atomic Coherent States in Quantum Optics, Physical Review A, vol.6, p.5, 1972.

M. Tavis and F. W. Cummings, Exact Solution for an N -Molecule-Radiation-Field Hamiltonian, Physical Review, vol.170, issue.6, pp.379-384, 1968.

R. H. Dicke, Coherence in Spontaneous Radiation Processes, Physical Review, vol.93, pp.31-899, 1954.

M. Gangl and H. Ritsch, Cold atoms in a high-Q ring cavity, Physical Review A, vol.61, p.7, 2000.

H. Stoop, P. Masiak, and K. Rzaz-dotewski, Atomic wave packet in a ring cavity, Physical Review A, vol.55, issue.3, p.7, 1997.

R. M. Sandner, W. Niedenzu, and H. Ritsch, Subrecoil cavity cooling towards degeneracy: A numerical study, EPL (Europhysics Letters), vol.104, p.7, 2013.

A. Hemmerich, Quantum entanglement in dilute optical lattices, Physical Review A, vol.60, issue.2, p.7, 1999.

R. Bonifacio and L. De-salvo, Collective atomic recoil laser (CARL) optical gain without inversion by collective atomic recoil and self-bunching of twolevel atoms, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, vol.341, pp.90382-90386, 1994.

D. Kruse, Cold atoms in a high-Q ring cavity, Physical Review A, vol.67, issue.5, pp.1050-2947, 2003.

J. Bochmann, Lossless state detection of single neutral atoms, Physical review letters, vol.104, pp.1079-7114, 2010.

R. Gehr, Cavity-based single atom preparation and high-fidelity hyperfine state readout, Physical review letters, vol.104, pp.1079-7114, 2010.

Y. Takahashi, Quantum nondemolition measurement of spin via the paramagnetic Faraday rotation, Physical Review A, vol.60, issue.6, p.10, 1999.

M. Kuzmich and . Bigelow, Generation of spin squeezing via continuous quantum nondemolition measurement, Physical review letters, vol.85, p.10, 2000.

Z. Chen, Cavity-aided nondemolition measurements for atom counting and spin squeezing, Physical Review A, vol.89, p.11, 2014.

N. Kostylev, Sub-Doppler cooling of ytterbium with the?1S_0-1P_1 transition including?171Yb (I=1/2), Journal of the Optical Society of America B, vol.31, p.12, 2014.

A. Batär, Erzeugung und Charakterisierung ultrakalter Rubidiumund Ytterbiumatome: Auf dem Weg zu einem gemischten Quantengas

A. Cooper, Alkaline-Earth Atoms in Optical Tweezers, Physical Review X, vol.8, p.12, 2018.

S. Stellmer and F. Schreck, Reservoir spectroscopy of 5s5p3P2 -5snd3D1,2,3 transitions in strontium, Physical Review A, vol.90, issue.2, p.12, 2014.

W. Bowden, A pyramid MOT with integrated optical cavities as a cold atom platform for an optical lattice clock, vol.113, p.12

A. V. Taichenachev, Magnetic Field-Induced Spectroscopy of Forbidden Optical Transitions with Application to Lattice-Based Optical Atomic Clocks, Physical Review Letters, vol.96, issue.8, p.12, 2006.

D. Vitaly and . Ovsiannikov, Magic-wave-induced S01?P03 transition in even isotopes of alkaline-earth-metal-like atoms, Physical Review A, vol.75, issue.2, p.12, 2007.

M. Yasuda, Photoassociation spectroscopy of Sr88: Reconstruction of the wave function near the last node, Physical Review A, vol.73, issue.1, p.13, 2006.

R. Drozdowski, Radiative lifetimes of the lowest 3P1 metastable states of Ca and Sr, Zeitschrift fr Physik D Atoms, Molecules and Clusters 41, vol.2, p.13, 1997.

H. Brian, C. J. Bransden, and . Joachain, Physics of atoms and molecules, vol.2, p.13

V. A. Dzuba and A. Derevianko, Dynamic polarizabilities and related properties of clock states of the ytterbium atom, Journal of Physics B: Atomic, Molecular and Optical Physics, vol.43, p.14, 2010.

M. M. Boyd, High Precision Spectroscopy of Strontium in an Optical Lattice: Towards a New Standard for Frequency and Time, p.14, 2007.

H. J. Andrä, Lifetimes of levels in neutral strontium (Sr i)*", In: Journal of the Optical Society of America, vol.65, p.15, 1975.

W. H. Parkinson, E. M. Reeves, and F. S. Tomkins, Neutral calcium, strontium and barium: Determination of f values of the principal series by the hook method, Journal of Physics B: Atomic and Molecular Physics, vol.9, p.15, 1976.

W. R. Garton, Measurement of oscillator strengths in the ultraviolet by magneto-optical rotation, Journal of Physics B: Atomic and Molecular Physics, vol.16, issue.3, p.15, 1983.

G. Jönsson, Natural radiative lifetimes in the1 P 1 and1 F 3 sequences of Sr I, Zeitschrift fr Physik A Atoms and Nuclei, vol.316, p.15, 1984.

N. Vaeck, M. Godefroid, E. Jo/rgen, and . Hansen, Multiconfiguration Hartree-Fock calculations for singlet terms in neutral strontium, Physical Review A, vol.38, p.15, 1988.

D. A. Miller, Collisional energy transfer between excited-state strontium and noble-gas atoms, Physical Review A, vol.46, p.15, 1992.

J. P. Connerade, Atomic f-value measurements of high Rydberg members by pulsed laser-based magneto-optical spectroscopy, Journal of Physics B: Atomic, Molecular and Optical Physics, vol.25, p.15, 1992.

H. G. Werij, Oscillator strengths and radiative branching ratios in atomic Sr, Physical Review A, p.15, 1992.

G. Sergey and . Porsev, Determination of Sr properties for a high-accuracy optical clock, Physical Review A, vol.78, p.15, 2008.

X. Zhou, Magic wavelengths for terahertz clock transitions, Physical Review A, vol.81, p.15, 2010.

M. J. Martin, A Quantum Many-Body Spin System in an Optical Lattice Clock, Science, vol.341, p.15, 2013.

H. Uys, Decoherence due to elastic Rayleigh scattering, Physical review letters 105, vol.20, p.15, 2010.

R. Ozeri, Hyperfine coherence in the presence of spontaneous photon scattering, Physical Review Letters, vol.95, p.15, 2005.

M. Saffman, Spin squeezing of atomic ensembles by multicolor quantum nondemolition measurements, Physical Review A, vol.79, p.15, 2009.

K. C. Cox, Deterministic Squeezed States with Collective Measurements and Feedback, Physical review letters, vol.116, p.15, 2016.

E. S. Polzik and J. Ye, Entanglement and spin squeezing in a network of distant optical lattice clocks, Physical Review A, vol.93, issue.2, p.16, 2016.

M. A. Norcia, Superradiance on the millihertz linewidth strontium clock transition, Science advances 2.10, p.16, 2016.

B. Braverman, Near-Unitary Spin Squeezing in?171Yb, Physical review letters, vol.122, p.16, 2019.

S. Origlia, Towards an optical clock for space: Compact, high-performance optical lattice clock based on bosonic atoms, Physical Review A, vol.98, issue.5, p.19, 2018.

G. L. Weissler, Methods of experimental physics, vol.14, p.21, 1979.

M. Abdullah and A. Mamun, Effect of heat treatments and coatings on the outgassing rate of stainless steel chambers, Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, vol.32, p.21, 2014.

F. John and . O'hanlon, A User's Guide to Vacuum Technology, p.22, 2003.

K. J. Ross and B. Sonntag, High temperature metal atom beam sources, Review of Scientific Instruments, vol.66, p.22, 1995.

O. Kock, Laser controlled atom source for optical clocks, Scientific Reports, vol.6, p.23, 2016.

W. M. Haynes, D. R. Lide, and T. J. Bruno, CRC handbook of chemistry and physics: A ready-reference book of chemical and physical data, p.23, 2015.

N. Ramsey, ;. Oxford, and N. York, Oxford science publications, p.23, 1985.

F. Sorrentino, Laser cooling and trapping of atomic strontium for ultracold atom physics, high-precision spectroscopy and quantum sensors, Modern Physics Letters B, vol.20, p.23, 2006.

N. W. Alcock, Bonding and structure: Structural principles in inorganic and organic chemistry. Student ed. Ellis Horwood series in inorganic chemistry, p.23, 1990.

D. R. Olander, R. H. Jones, and W. J. Siekhaus, Molecular Beam Sources Fabricated from Multichannel Arrays. IV. Speed Distribution in the Centerline Beam, Journal of Applied Physics, vol.41, p.24, 1970.

J. Harold, P. Metcalf, and . Van-der-straten, Laser Cooling and Trapping, p.24, 1999.

G. R. Hanes, Multiple Tube Collimator for Gas Beams, Journal of Applied Physics, vol.31, p.25, 1960.

H. C. Beijerinck and N. F. Verster, Velocity distribution and angular distribution of molecular beams from multichannel arrays, Journal of Applied Physics, vol.46, p.25, 1975.

M. Knudsen, Die Gesetze der Molekularströmung und der inneren Reibungsströmung der Gase durch Röhren, Annalen der Physik, vol.333, p.25, 1909.

M. Knudsen, Die Molekularströmung der Gase durch Öffnungen und die Effusion, Annalen der Physik, vol.333, p.25, 1909.

P. Clausing, Erratum: The Flow of Highly Rarefied Gases through Tubes of Arbitrary Length, Journal of Vacuum Science and Technology, vol.8, p.26, 1971.

S. Adamson, C. O'carroll, and J. F. Mcgilp, The angular distribution of thermal molecular beams formed by single capillaries in the molecular flow regime, Vacuum 38, vol.6, p.26, 1988.

V. V. Levdansky, J. Smolik, and P. Moravec, Effect of surface diffusion on transfer processes in heterogeneous systems, International Journal of Heat and Mass Transfer, vol.51, p.26, 2008.

N. Dongari, A. Sharma, and F. Durst, Pressure-driven diffusive gas flows in micro-channels: From the Knudsen to the continuum regimes, Microfluidics and Nanofluidics, vol.6, p.26, 2009.

J. Tabet, Absolute molecular flux and angular distribution measurements to characterize DNA/RNA vapor jets, Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, vol.268, p.26, 2010.
URL : https://hal.archives-ouvertes.fr/in2p3-00462417

J. M. Guevremont, S. Sheldon, and F. Zaera, Design and characterization of collimated effusive gas beam sources: Effect of source dimensions and backing pressure on total flow and beam profile, Review of Scientific Instruments, vol.71, p.26, 2000.

C. A. Stan and W. Ketterle, Multiple species atom source for lasercooling experiments, Review of Scientific Instruments, vol.76, p.26, 2005.

M. Schioppo, A compact and efficient strontium oven for lasercooling experiments, Review of Scientific Instruments, vol.83, pp.34-6748, 2012.

M. Misakian, Equations for the Magnetic Field Produced by One or More Rectangular Loops of Wire in the Same Plane, Journal of research of the National Institute of Standards and Technology, vol.105, p.31, 2000.

D. S. Barker, Single-Beam Zeeman Slower and Magneto-Optical Trap Using a Nanofabricated Grating, Physical Review Applied, vol.11, issue.6, p.31, 2019.

Y. Bidel, Piégeage et refroidissement laser du strontium, Etude de l'effet des interférences en diffusion multiple". Dissertation. Nizza: Université de Nice, p.35, 2002.

C. J. Pagett, Injection locking of a low cost high power laser diode at 461 nm, The Review of scientific instruments, vol.87, p.36, 2016.

X. Baillard, Horloge à réseau optique à atomes de Strontium". Dissertation, p.36, 2008.

A. Matthew, J. K. Norcia, and . Thompson, Simple laser stabilization to the strontium 88Sr transition at 707 nm, Review of Scientific Instruments, vol.87, p.37, 2016.

D. G. Matei, 1.5um Lasers with Sub-10 mHz Linewidth, Physical review letters, vol.118, p.37, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02020129

W. Zhang, Reduction of residual amplitude modulation to 1 × 10 ?6 for frequency modulation and laser stabilization, Optics letters, vol.39, pp.1980-1983, 2014.

M. A. Norcia, Narrow-line laser cooling by adiabatic transfer, New Journal of Physics, vol.20, p.38, 2018.

R. Le-targat, J. Zondy, and P. Lemonde, 75%-Efficiency blue generation from an intracavity PPKTP frequency doubler, Optics Communications, vol.247, p.39, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00002488

R. W. Drever, Laser phase and frequency stabilization using an optical resonator, In: Applied Physics B Photophysics and Laser Chemistry, vol.31, p.40, 1983.

E. D. Black, An introduction to Pound-Drever-Hall laser frequency stabilization, American Journal of Physics, vol.69, p.40, 2001.

H. Müller, Moderne optische Tests der Relativitätstheorie: Modern optical tests of relativity: Zugl.: Berlin, Humboldt-Univ., Diss, vol.73, p.3830014945, 2004.

D. S. Elliott, R. Roy, and S. J. Smith, Extracavity laser band-shape and bandwidth modification, Physical Review A, vol.26, p.42, 1982.

G. Di-domenico, S. Schilt, and P. Thomann, Simple approach to the relation between laser frequency noise and laser line shape, Applied optics 49, vol.25, p.42, 2010.

E. A. Whittaker, M. Gehrtz, and G. C. Bjorklund, Residual amplitude modulation in laser electro-optic phase modulation, Journal of the Optical Society of America B, vol.2, p.43, 1985.

N. C. Wong and J. L. Hall, Servo control of amplitude modulation in frequency-modulation spectroscopy: Demonstration of shot-noise-limited detection, Journal of the Optical Society of America B, vol.2, issue.9, p.43, 1985.

F. , D. Burck, and O. Lopez, Correction of the distortion in frequency modulation spectroscopy, Measurement Science and Technology, vol.15, p.43, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00003179

C. Ishibashi, J. Ye, and J. L. Hall, Analysis/reduction of residual amplitude modulation in phase/frequency modulation by an EOM, Technical digest. Trends in optics and photonics series, p.44, 2002.

K. Arai, Robust extraction of control signals for power-recycled interferometric gravitational-wavedetectors, p.44, 2001.

K. W. Martin, Compact Optical Frequency Standards for FutureApplications, p.47, 2019.

C. K. Patel, Continuous-Wave Laser Action on Vibrational-Rotational Transitions of C O2, Physical Review, vol.136, p.51, 1964.

T. Takekoshi, B. M. Patterson, and R. J. Knize, Observation of Optically Trapped Cold Cesium Molecules, Physical Review Letters, vol.81, p.51, 1998.

K. Ott, Millimeter-long fiber Fabry-Perot cavities, Optics express, vol.24, p.51, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01323860

T. Steven and . Yang, Comparing the use of mid-infrared versus far-infrared lasers for mitigating damage growth on fused silica, Applied Optics, vol.49, p.52, 2010.

J. E. Shelby, Density of vitreous silica, In: Journal of Non-Crystalline Solids, vol.349, p.53, 2004.

U. Haken, Refractive index of silica glass: Influence of fictive temperature, In: Journal of Non-Crystalline Solids, vol.265, p.53, 2000.

D. B. Fraser, Factors Influencing the Acoustic Properties of Vitreous Silica, Journal of Applied Physics, vol.39, p.53, 1968.

T. Doualle, Thermo-mechanical simulations of CO 2 laser-fused silica interactions, Journal of Applied Physics, vol.119, p.54, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01313488

P. R. Dolan, Femtoliter tunable optical cavity arrays, Optics letters, vol.35, p.54, 2010.

R. Albrecht, Narrow-band single photon emission at room temperature based on a single nitrogen-vacancy center coupled to an all-fibercavity, Applied Physics Letters, vol.105, p.54, 2014.

D. Hunger, Laser micro-fabrication of concave, low-roughness features in silica, AIP Advances, vol.2, p.21583226, 2012.

M. Uphoff, Frequency splitting of polarization eigenmodes in microscopic Fabry-Perot cavities, New Journal of Physics, vol.17, p.54, 2015.

D. Hunger, A Bose-Einstein condensate coupled to a micromechanical oscillator, Dissertation. München: Ludwig-Maximilian-Universität, vol.85, p.54, 2010.

S. Garcia, Dual-wavelength fiber Fabry-Perot cavities with engineered birefringence, Optics express, vol.26, p.55, 2018.

S. Garcia, Interfaces fibrées entre atomes uniques et photons uniques". Dissertation. Paris: École Normale Supérieure de Paris, 2015.

K. Ott, Towards a squeezing-enhanced atomic clock on a chip, 2016.
URL : https://hal.archives-ouvertes.fr/tel-01452767

P. A. Temple, W. H. Lowdermilk, and D. Milam, Carbon dioxide laser polishing of fused silica surfaces for increased laser-damage resistance at 1064 nm, Applied optics 21, vol.18, p.59, 1982.

C. Weingarten, Laser polishing and laser shape correction of optical glass, Journal of Laser Applications, vol.29, p.59, 2017.

M. Krzysztof, H. J. Nowak, D. R. Baker, and . Hall, Efficient laser polishing of silica micro-optic components, Applied optics, vol.45, p.59, 2006.

P. Cormont, Relevance of Carbon Dioxide Laser to Remove Scratches on Large Fused Silica Polished Optics, Advanced Engineering Materials, vol.17, p.59, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01228356

J. Sullivan, J. Zhao, and T. D. Bennett, Measurement of thermally induced changes in the refractive index of glass caused by laser processing, Applied optics, vol.44, p.64, 2005.

T. Claude, Émission dans les bandes télécoms de nanotubes de carbone uniques couplés à une micro-cavité fibrée, p.64, 2019.

R. Charles, J. E. Lilley, and . Sader, Velocity profile in the Knudsen layer according to the Boltzmann equation, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.464, p.64, 2008.

L. Robin, Infrared thermometry and interferential microscopy for analysis of crater formation at the surface of fused silica under CO2 laser irradiation, Journal of Applied Physics, vol.111, p.64, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00690761

C. M. Bishop, Corrected at 8th printing 2009. Information science and statistics, p.70, 2009.

P. Ramachandran, B. Zoph, Q. Le, and V. , Searching for Activation Functions, p.72

M. Zaheer, Adaptive Methods for Nonconvex Optimization, Advances in Neural Information Processing Systems 31, pp.9793-9803, 2018.

Y. Gal, Uncertainty in Deep Learning". Dissertation, p.75, 2016.

W. Emkey and C. Jack, Analysis and evaluation of graded-index fiber lenses, Journal of Lightwave Technology, vol.5, p.75, 1987.

W. A. Reed, M. F. Yan, and M. J. Schnitzer, Gradient-index fiber-optic microprobes for minimally invasive in vivo low-coherence interferometry, Optics Letters, vol.27, p.75, 2002.

M. Zickar, MEMS compatible micro-GRIN lenses for fiber to chip coupling of light, Optics Express, vol.14, issue.10, p.75, 2006.

P. J. Robert, B. Barretto, M. J. Messerschmidt, and . Schnitzer, In vivo fluorescence imaging with high-resolution microlenses, Nature methods, vol.6, p.75, 2009.

J. Kim, Fabrication and operation of GRIN probes for in vivo fluorescence cellular imaging of internal organs in small animals, Nature protocols, vol.7, p.75, 2012.

O. Svelto and D. C. Hanna, Principles of Lasers, vol.86, p.91, 2010.

W. B. Joyce and B. C. Deloach, Alignment of Gaussian beams, Applied Optics, vol.23, p.80, 1984.

. Gurpreet-kaur-gulati, Fiber cavities with integrated mode matching optics, Scientific Reports, vol.7, p.82, 2017.

S. Bernon, Heterodyne non-demolition measurements on cold atomic samples: Towards the preparation of non-classical states for atom interferometry, New Journal of Physics, vol.13, p.86, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00574298

J. Robert and . Lewis-swan, A cavity-QED protocol for precise field sensing in the optical domain, p.86, 2019.

A. E. Siegman, Lasers. Mill Valley, Calif.: University Science Books, vol.87, p.935702113, 1986.

M. Möller, Fabry-Pérot and ring cavity configurations and transverse optical patterns, Journal of Modern Optics, vol.45, p.89, 1998.

H. Kogelnik, Astigmatically compensated cavities for CW dye lasers, IEEE Journal of Quantum Electronics, vol.8, p.89, 1972.

F. Raab and S. Whitcomb, Estimation of Special Optical Properties of a Triangular Ring Cavity, vol.92, 1992.

J. Yuan, Nonplanar ring resonator modes: Generalized Gaussian beams, Applied optics, vol.46, p.91, 2007.

D. Wen, D. Li, and J. Zhao, Analysis on the polarization property of the eigenmodes in a nonplanar ring resonator, Applied optics, vol.50, p.91, 2011.

D. Li, C. Bi, and J. Zhao, Characterization of the eigenmode frequency spectrum influenced by the polarization states and light field distribution in a nonplanar ring resonator, Applied optics, vol.55, p.91, 2016.

P. Baumeister, SPIE Press monograph. Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA): SPIE, 2004. isbn: 9780819453136, vol.137, p.92

H. Davies, The reflection of electromagnetic waves from a rough surface, Proceedings of the IEE -Part III: Radio and Communication Engineering, vol.101, p.94, 1954.

H. E. Bennett and J. O. Porteus, Relation Between Surface Roughness and Specular Reflectance at Normal Incidence, Journal of the Optical Society of America, vol.51, p.94, 1961.

J. E. Harvey, Total integrated scatter from surfaces with arbitrary roughness, correlation widths, and incident angles, Optical Engineering, vol.51, p.94, 2012.

N. Straniero, Realistic loss estimation due to the mirror surfaces in a 10 meters-long high finesse Fabry-Perot filter-cavity, Optics express, vol.23, pp.1094-4087, 2015.

J. M. Elson, J. P. Rahn, and J. M. Bennett, Relationship of the total integrated scattering from multilayer-coated optics to angle of incidence, polarization, correlation length, and roughness cross-correlation properties, Applied optics, vol.22, p.95, 1983.

J. Degallaix, OSCAR a Matlab based optical FFT code, In: Journal of Physics: Conference Series, vol.228, p.96, 2010.

P. Hello and C. N. Man, Design of a low-loss off-axis beam expander, Applied optics, vol.35, p.96, 1996.
URL : https://hal.archives-ouvertes.fr/in2p3-00022719

G. Krenz, Controlling mode locking in optical ring cavities, Applied Physics B, vol.87, pp.643-647, 2007.

D. Kruse, Selbstorganisation und Laseremission in kalten atomaren Ensembles, Dissertation. Tübingen: Eberhard-Karls-Universität zu Tübingen, p.97, 2005.

D. Gangloff, Preventing and reversing vacuum-induced optical losses in high-finesse tantalum (V) oxide mirror coatings, Optics express 23, vol.14, p.100, 2015.

J. Gallego, Strong Purcell Effect on a Neutral Atom Trapped in an Open Fiber Cavity, Physical review letters, vol.121, p.100, 2018.

T. Middelmann, High Accuracy Correction of Blackbody Radiation Shift in an Optical Lattice Clock, Physical Review Letters, vol.109, p.103, 2012.

J. Lodewyck, Observation and cancellation of a perturbing dc stark shift in strontium optical lattice clocks, IEEE transactions on ultrasonics, ferroelectrics, and frequency control, vol.59, issue.3, p.103, 2012.

I. Dmitry and . Yakubovsky, Optical constants and structural properties of thin gold films, Optics express, vol.25, p.108, 2017.

. Wineland, Spin squeezing and reduced quantum noise in spectroscopy, Physical Review A, vol.46, p.113, 1992.

O. Hosten, Measurement noise 100 times lower than the quantumprojection limit using entangled atoms, Nature, vol.529, p.114, 2016.

A. S. Parkins, E. Solano, and J. I. Cirac, Unconditional two-mode squeezing of separated atomic ensembles, Physical Review Letters, vol.96, issue.5, p.114, 2006.

W. Chen, Carving Complex Many-Atom Entangled States by Single-Photon Detection, Physical review letters, vol.115, p.114, 2015.

S. Welte, Cavity Carving of Atomic Bell States, Physical review letters, vol.118, p.114, 2017.

P. F. Goldsmith, Quasioptical systems: Gaussian beam quasioptical propagation and applications. IEEE press/Chapman & Hall Publishers series on microwave technology and RF, p.117, 1998.