S. Microsphères-de, 19 1.4.1 Description électromagnétique des modes, ., vol.21

.. Valeurs-approchées, 24 1.4.3.1 Positions des résonances, ., p.26

.. Facteur-de-qualité-d-'une-sphère-en-silice, 27 1.4.4.1 Les pertes radiatives, ., p.28

L. Pertes-par-diffusion and .. , 29 1.4.4.4 Les pertes par adsorption de l', p.31

C. Aux, W. , and M. , 61 3.3.1 Première approche : source laser large bande, source laser accordable, pp.65-72

W. Perspectives-autour-du-germanium-et-des-cavités and W. Cavité, 91 4.2.1 Avancées récentes sur l'élaboration de Ge à « gap direct, 91 4.2.2 Vers le laser Ge avec une, p.97

X. Zhang, H. Choi, and A. M. Armani, Ultimate quality factor of silica microtoroid resonant cavities, Applied Physics Letters, vol.96, issue.15, p.153304, 2010.
DOI : 10.1063/1.3398008

J. Verbert, Réalisation et étude optique de microcavités à modes de galerie intégrées sur silicium, 2006.

D. K. Armani, T. J. Kippenberg, S. M. Spillane, and K. J. Vahala, Ultra-high-Q toroid microcavity on a chip, Nature, vol.27, issue.6926, p.925, 2003.
DOI : 10.1038/35097032

V. B. Braginsky, M. L. Gorodestky, and V. S. Ilchenko, Quality-factor and nonlinear properties of optical whispering-gallery modes, Physics Letters A, vol.137, issue.7-8, p.393, 1989.
DOI : 10.1016/0375-9601(89)90912-2

H. Tzeng, K. F. Wall, M. B. Long, and R. K. Chang, Laser emission from individual droplets at wavelengths corresponding to morphology-dependent resonances, Optics Letters, vol.9, issue.11, p.499, 1984.
DOI : 10.1364/OL.9.000499

H. Lin, A. L. Huston, B. L. Justus, and A. J. Campillo, Some characteristics of a droplet whispering-gallery-mode laser, Optics Letters, vol.11, issue.10, p.614, 1984.
DOI : 10.1364/OL.11.000614

D. W. Vernooy, V. S. Ilchenko, H. Mabuchi, E. W. Streed, and H. J. Kimble, High-Q measurements of fused-silica microspheres in the near infrared, Optics Letters, vol.23, issue.4, p.247, 1998.
DOI : 10.1364/OL.23.000247

J. R. Buck and H. J. Kimble, Optimal sizes of dielectric microspheres for cavity QED with strong coupling, Physical Review A, vol.67, issue.3, p.33806, 2003.
DOI : 10.1103/PhysRevA.67.033806

M. L. Gorodetsky, A. A. Savchenkov, and V. S. Ilchenko, Ultimate Q of optical microsphere resonators, Optics Letters, vol.21, issue.7, p.453, 1996.
DOI : 10.1364/OL.21.000453

L. Kou, D. Labrie, and P. Chylek, Refractive indices of water and ice in the 065- to 25-??m spectral range, Applied Optics, vol.32, issue.19, p.3531, 1993.
DOI : 10.1364/AO.32.003531

G. Hale and M. Querry, Optical Constants of Water in the 200-nm to 200-??m Wavelength Region, Applied Optics, vol.12, issue.3, p.555, 1973.
DOI : 10.1364/AO.12.000555

J. C. Knight, G. Cheung, F. Jacques, and T. A. Birks, Phase-matched excitation of whispering-gallery-mode resonances by a fiber taper, Optics Letters, vol.22, issue.15, p.1129, 1997.
DOI : 10.1364/OL.22.001129

S. M. Spillane, T. J. Kippenberg, O. J. Painter, and K. J. Vahala, Ideality in a Fiber-Taper-Coupled Microresonator System for Application to Cavity Quantum Electrodynamics, Physical Review Letters, vol.91, issue.4, p.43902, 2003.
DOI : 10.1103/PhysRevLett.91.043902

J. D. Love, W. M. Henry, W. J. Stewart, R. J. Black, S. Lacroix et al., Tapered single-mode fibres and devices. Part 1: Adiabaticity criteria, IEE Proceedings J Optoelectronics, vol.138, issue.5, pp.343-354, 1991.
DOI : 10.1049/ip-j.1991.0060

F. Orucevic, V. Lefèvre-seguin, and J. Hare, Transmittance and near-field characterization of sub-wavelength tapered optical fibers, Optics Express, vol.15, issue.21, p.13624, 2007.
DOI : 10.1364/OE.15.013624

URL : https://hal.archives-ouvertes.fr/hal-00257805

F. Orucevic, Production des microtores de silice sur silicium; Excitation et caractérisation de leurs modes de galerie, 2007.

F. Bayle and J. P. Meunier, Efficient fabrication of fused-fiber biconical taper structures by a scanned CO_2 laser beam technique, Applied Optics, vol.44, issue.30, pp.6402-6411, 2005.
DOI : 10.1364/AO.44.006402

URL : https://hal.archives-ouvertes.fr/ujm-00356309

J. Jager, V. Calvo, E. Delamadeleine, P. Noé, T. Ricart et al., silica microcavities on a chip: From microtoroid to microsphere, Applied Physics Letters, vol.99, issue.18, p.181123, 2011.
DOI : 10.1063/1.3658389

URL : https://hal.archives-ouvertes.fr/hal-00987669

G. Kakarantzas, T. E. Dimmick, T. A. Birks, R. L. Roux, P. J. St et al., Miniature all-fiber devices based on CO 2 laser microstructuring of tapered fibers

I. S. Grudinin, V. S. Ilchenko, and L. Maleki, Ultrahigh optical Q factors of crystalline resonators in the linear regime, Physical Review A, vol.74, issue.6, p.63806, 2006.
DOI : 10.1103/PhysRevA.74.063806

V. S. Ilchenko, A. A. Savchenkov, A. B. Matsko, and L. Maleki, Nonlinear Optics and Crystalline Whispering Gallery Mode Cavities, Physical Review Letters, vol.92, issue.4, p.43903, 2004.
DOI : 10.1103/PhysRevLett.92.043903

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.583.2757

B. Gayral, J. Gérard, A. Lemaitre, C. Dupuis, L. Manin et al., wet-etched GaAs microdisks containing InAs quantum boxes, High-Q wet-etched GaAs microdisks containing InAs quantum boxes, p.1908, 1999.
DOI : 10.1063/1.124894

T. Grossmann, M. Hauser, T. Beck, C. Gohn-kreuz, M. Karl et al., High-Q conical polymeric microcavities, Applied Physics Letters, vol.96, issue.1, p.13303, 2010.
DOI : 10.1063/1.3280044

M. Lee and M. C. Wu, 3D Silicon transformation using Hydrogen annealing, Solid- State Sensor, Actuator and Microsystems Workshop, 2004.

F. Treussart, Etude expérimentale de l'effet laser dans des microsphères de silice dopées avec des ions néodymes, 1997.

. Haroche, Splitting of High-Q Mie Modes Induced by Light Backscattering in Silica Microspheres, Opt. Lett, vol.20, pp.1835-1837, 1995.

M. L. Gorodetsky, A. D. Pryamikov, and V. S. Ilchenko, Rayleigh scattering in high-Q microspheres, Journal of the Optical Society of America B, vol.17, issue.6, pp.1051-1057, 2000.
DOI : 10.1364/JOSAB.17.001051

T. J. Kippenberg, S. M. Spillane, and K. J. Vahala, Modal coupling in traveling-wave resonators, Optics Letters, vol.27, issue.19, pp.1669-1671, 2002.
DOI : 10.1364/OL.27.001669

J. Zhu, S. K. Ozdemir, L. He, D. Chen, and L. Yang, Single virus and nanoparticle size spectrometry by whispering-gallery-mode microcavities, Optics Express, vol.19, issue.17, p.16195, 2011.
DOI : 10.1364/OE.19.016195.m001

J. Zhu, S. K. Ozdemir, Y. Xiao, L. Li, L. He et al., On-chip single nanoparticle detection and sizing by mode splitting in an ultrahigh-Q microresonator, Nature Photonics, vol.446, issue.1, pp.46-49, 2010.
DOI : 10.1038/nphoton.2009.237

T. J. Kippenberg, S. M. Spillane, and K. J. Vahala, Demonstration of ultra-high-Q small mode volume toroid microcavities on a chip, Applied Physics Letters, vol.85, issue.25, p.6113, 2004.
DOI : 10.1063/1.1833556

E. P. Ostby, Photonic whispering-gallery resonators in new environments, 2009.

T. J. Kippenberg, Nonlinear optics in Ultra-high-Q Whispering-Gallery Optical Microcavities, 2004.

V. B. Braginsky, M. L. Gorodestky, and V. S. Ilchenko, Quality-factor and nonlinear properties of optical whispering-gallery modes, Physics Letters A, vol.137, issue.7-8, pp.393-397, 1989.
DOI : 10.1016/0375-9601(89)90912-2

G. Lin, Fabrication and characterization of optical microcavities functionalized by rare-earth oxide nanocrystals: realization of a single-mode ultra-low threshold laser, 2010.
URL : https://hal.archives-ouvertes.fr/tel-00517544

F. Liu, S. Lan, and M. Hossein-zadeh, Application of dynamic line narrowing in resonant optical sensing, Optics Letters, vol.36, issue.22, pp.4395-4397, 2011.
DOI : 10.1364/OL.36.004395

K. J. Vahala, Optical microcavities, Nature, vol.424, issue.6950, p.839, 2003.
DOI : 10.1038/nature01939

Y. Candéla, Microcavités de silice : Excitation par fibre des modes de galerie et fonctionnalisation par des nanocristaux de silicium, 2011.

. Hare, Excitation mapping of whispering gallery modes in silica microcavities, Opt. Lett, vol.35, pp.583-585105, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00430459

L. Ding, C. Belacel, C. Ducci, G. Leo, and I. Favero, Ultralow loss single-mode silica tapers manufactured by a microheater, Applied Optics, vol.49, issue.13, pp.2441-2445, 2010.
DOI : 10.1364/AO.49.002441

T. J. Kippenberg, J. Kalkman, A. Polman, and K. J. Vahala, Demonstration of an erbium-doped microdisk laser on a silicon chip, Physical Review A, vol.74, issue.5, p.51802, 2006.
DOI : 10.1103/PhysRevA.74.051802

H. Lee, T. Chen, J. Li, K. Y. Yang, S. Jeon et al., Ultra-high-Q wedge-resonator on a silicon chip, 2011.

V. S. Ilchenko, M. L. Gorodetsky, X. Yao, and L. Maleki, Microtorus:???a high-finesse microcavity with whispering-gallery modes, Optics Letters, vol.26, issue.5, pp.256-259, 2001.
DOI : 10.1364/OL.26.000256

A. Coillet, Microfibres pour l'optique non linéaire, 2011.

A. W. Snyder and J. D. Love, Optical Waveguide Theory, 1983.
DOI : 10.1007/978-1-4613-2813-1

L. Collot, Etude théorique et expérimentale des résonances de galerie de microsphères de silice : pièges à photons pour des expériences d'électrodynamique en cavité, 1994.

F. Oehler, Etude et compréhension des mécanismes de croissance catalysés des nanofils de silicium obtenus par Dépôt Chimique en phase Vapeur, 2010.

J. Liu, X. Sun, R. Camacho-aguilera, L. C. Kimerling, and J. Michel, Ge-on-Si laser operating at room temperature, Optics Letters, vol.35, issue.5, pp.679-681, 2010.
DOI : 10.1364/OL.35.000679

T. Carmon, M. C. Cross, and K. J. Vahala, Chaotic Quivering of Micron-Scaled On-Chip Resonators Excited by Centrifugal Optical Pressure, Physical Review Letters, vol.98, issue.16, p.167203, 2007.
DOI : 10.1103/PhysRevLett.98.167203

T. Carmon and K. J. Vahala, Modal Spectroscopy of Optoexcited Vibrations of a Micron-Scale On-Chip Resonator at Greater than 1 GHz Frequency, Physical Review Letters, vol.98, issue.12, p.123901, 2007.
DOI : 10.1103/PhysRevLett.98.123901

N. Pauc, Condensation d'excitons dans les nanostructures de silicium, 2004.

M. Fujii, M. Yoshida, Y. Kanzawa, S. Hayashi, and K. Yamamoto, 1.54 ??m photoluminescence of Er3+ doped into SiO2 films containing Si nanocrystals: Evidence for energy transfer from Si nanocrystals to Er3+, Applied Physics Letters, vol.71, issue.9, p.1198, 1997.
DOI : 10.1063/1.119624

URL : https://hal.archives-ouvertes.fr/jpa-00228334

. Simpson, Light emission from Si nanoclusters formed at low temperatures, Appl. Phys

O. Savchyn, F. R. Ruhge, P. Kik, R. M. Todi, K. V. Coffey et al., films, Physical Review B, vol.76, issue.19, p.195419, 2007.
DOI : 10.1103/PhysRevB.76.195419

C. Calvo, F. D. Maurizio, and . Acapito, Evolution of the fraction of Er ions sensitized by Si nanostructures in silicon-rich silicon oxide thin films, Nanotech, vol.20, p.355704, 2009.

L. Skuja, Optically active oxygen-deficiency-related centers in amorphous silicon dioxide, Journal of Non-Crystalline Solids, vol.239, issue.1-3, p.16, 1998.
DOI : 10.1016/S0022-3093(98)00720-0

J. Kalkman, A. Tchebotareva, A. Polman, T. J. Kippenberg, B. Min et al., Tensilestrained , n-type Ge as a gain medium for monolithic laser integration on Si Toward a Germanium Laser for Integrated Silicon Photonics " , IEE journal of selected in quantum electronics 16 Ge-on-Si laser operating at room temperature Hybrid structure laser based on semiconductor nanowires and a silica microfiber knot cavity A new method for the measurement of crystallization rate of metals Ultra-lowthreshold erbium-implanted toroidal microlaser on silicon Near-infrared free-carrier absorption in silicon nanocrystals Exciton-erbium interactions in Si nanocrystal-doped SiO 2 Achieving optical gain in waveguideconfined nanocluster-sensitized erbium by pulsed excitation, 70] W. von Wartenberg, Verhandlungen der Deutsche Phys73] P. G. Kik, and A. Polman, pp.83103-11272, 1918.

G. Jakomin, I. Beaudoin, P. Sagnes, H. Boucaud, A. Rong et al., An all-silicon Raman laser Monolithic integration of room-temperature cw GaAs / AlGaAs lasers on Si substrates via relaxed graded GeSi buffer layers Réalisation de sources laser III-V sur silicium Electrically pumped InPbased microdisk lasers integrated with a nanophotonic silicon-on-insulator waveguide circuit GaSb-Based Laser, monolithically grown on silicon substrate, emitting at 1.55µm at room temperature Quelques propriétés physiques d'objets à base d'atomes de silicium, d'oxygène et de germanium: nanofils et microcavities optiques, Optical gain in single tensile-strained germanium photonic wire, pp.17925-553, 2001.

. Hadji, Efficient coupling of Er-doped silicon-rich oxide to microdisk whispering gallery modes, Appl. Phys. Lett, vol.86, p.111117, 2005.

J. Verbert, F. Mazen, T. Charvolin, E. Picard, V. Calvo et al., Room temperature emission from Er-doped silicon-rich oxide microtorus, The European Physical Journal Applied Physics, vol.34, issue.2, p.81, 2006.
DOI : 10.1051/epjap:2006048

A. Morand, Y. Zhang, B. Martin, K. P. Huy, D. Amans et al., Ultra-compact microdisk resonator filters on SOI substrate, Optics Express, vol.14, issue.26, p.12814, 2006.
DOI : 10.1364/OE.14.012814

URL : https://hal.archives-ouvertes.fr/hal-00145706

J. Jager, P. Noé, E. Picard, E. Delamadeleine, and V. Calvo, Fabrication and characterization of Er-doped Silicon-Rich Oxide toroidal microcavities on chip, 2009 11th International Conference on Transparent Optical Networks, 2009.
DOI : 10.1109/ICTON.2009.5185174

. Vahala, High sensitivity nanoparticle detection using optical microcavities, PNAS, vol.108, p.5976, 2011.

H. K. Hunt and A. M. Armani, Label-free biological and chemical sensors, Nanoscale, vol.20, issue.9, p.1544, 2010.
DOI : 10.1039/c0nr00201a

C. Ciminelli, F. Dell-'olio, C. E. Campanella, and M. N. Armenise, Photonic technologies for angular velocity sensing, Advances in Optics and Photonics, vol.2, issue.3, p.370, 2010.
DOI : 10.1364/AOP.2.000370

C. Ciminelli, C. E. Campanella, and M. N. Armenise, Optimized Design of Integrated Optical Angular Velocity Sensors Based on a Passive Ring Resonator, Journal of Lightwave Technology, vol.27, issue.14, p.2658, 2009.
DOI : 10.1109/JLT.2009.2014784

A. Yariv, Universal relations for coupling of optical power between microresonators and dielectric waveguides, Electronics Letters, vol.36, issue.4, p.321, 2000.
DOI : 10.1049/el:20000340

J. M. Choi, R. K. Lee, and A. Yariv, Control of critical coupling in a ring resonator???fiber configuration:???application to wavelength-selective switching, modulation, amplification, and oscillation, Optics Letters, vol.26, issue.16, p.1236, 2001.
DOI : 10.1364/OL.26.001236

J. Ctyroky, I. Richter, and M. Sinor, Dual resonance in a waveguide-coupled ring microresonator, Optical and Quantum Electronics, vol.36, issue.1, p.781, 2006.
DOI : 10.1007/s11082-006-9037-5