J. Maxin, S. Molin, G. Pillet, L. Morvan, A. Mugnier et al., Dual-frequency distributed feedback fibre laser for microwave signals generation, Electronics Letters, vol.47, issue.14, pp.47-816, 2011.
DOI : 10.1049/el.2011.1196

J. Maxin, G. Pillet, B. Steinhausser, L. Morvan, O. Llopis et al., Widely Tunable Opto- Electronic Oscillator Based on a Dual-Frequency Laser, Journal of Lightwave Technology, issue.17, pp.31-2919, 2013.

J. Maxin, S. Molin, G. Pillet, L. Morvan, A. Mugnier et al., Laser à fibre DFB pour la génération de signaux hyperfréquence, Journées Nationales d'Optique Guidée (JNOG), 2011.

J. Maxin, S. Molin, G. Pillet, L. Morvan, D. Dolfi et al., Generation of microwave signals with a dual-frequency distributed feedback fiber laser, IEEE Photonic Society 24th Annual Meeting, pp.479-480, 2011.
DOI : 10.1109/PHO.2011.6110635

J. Maxin, G. Pillet, L. Morvan, and D. Dolfi, Widely tunable opto-electronic oscillator, RF and Millimeter-Wave Photonics II, p.825905, 2012.
DOI : 10.1117/12.911963

L. Cren, O. Llopis, J. Maxin, P. Merrer, G. Nunzi-conti et al., Van Dijk et G. Cibiel, Mini and micro-resonators for the generation of high spectral purity microwave signals, Proceedings of MINAP 2012, 2012.

J. Maxin, K. Saleh, G. Pillet, L. Morvan, O. Llopis et al., Widely tunable opto-electronic oscillator based on a dual frequency laser, Proc. SPIE 8624, Terahertz, RF, Millimeter, and Submillimeter-Wave Technology and Applications VI, p.86240, 2013.

J. Maxin, G. Pillet, L. Morvan, and D. Dolfi, Widely tunable optoelectronic oscillator based on a dual-frequency laser, Lasers and Electro-Optics Europe, p.2013

J. Maxin, G. Pillet, M. Faugeron, F. Van-dijk, L. Morvan et al., Oscillateur optoélectronique couplé, Journées du club Optique et Microoondes (JCOM), 2013.

G. Kervella, J. Maxin, M. Faugeron, P. Berger, H. Lanctuit et al., Dolfi Laser sources for microwave to millimeter-wave applications, Photonics Research, vol.2, issue.4, 2014.

G. Pillet, J. Maxin, H. Lanctuit, and L. Morvan, Llopis Tunable Dual-Frequency Opto- Electronic Oscillator based on a Fiber-Ring Resonator, soumis à IEEE Microwave Photonics, Morvan Oscillateurs micro-ondes à résonateurs optiques : topologies, performances en bruit et perspectives Journée du Club Optique et Micro-ondes (JCOM) (2014)- Pacific Microwave Photonics Conference (MWP/APMP), 2014.

J. C. Maxwell, A Dynamical Theory of the Electromagnetic Field, Philosophical Transactions of the Royal Society of London, vol.155, issue.0, pp.459-513, 1865.
DOI : 10.1098/rstl.1865.0008

J. Gouyet and S. Kalinowski, Radio numérique -Panorama des systèmes et plates-formes de distribution, Editions T.I, vol.6140, issue.7, 2012.

M. Najman, Télévision numérique terrestre -Principes, TE6146. Editions T.I, issue.7, 2002.

M. Giovachini, Radiodiffusion par satellite, Editions T.I, vol.6160, issue.7, 1992.

J. Brillaud, Télécommunications par satellite, E7570. Editions T.I, issue.7, 1988.

J. Darricau, Physique et Théorie du Radar (3 'eme édition), p.14, 1993.

G. Marconi, transmitting electrical signals, US Patent 586

J. P. Gordon, H. J. Zeiger, and C. H. Townes, The Maser???New Type of Microwave Amplifier, Frequency Standard, and Spectrometer, Physical Review, vol.99, issue.4, pp.1264-1274, 1955.
DOI : 10.1103/PhysRev.99.1264

G. Walter, Method of maintaining electric currents of constant frequency (octobre 30 1923), US Patent 1, p.472583

K. Garenaux, T. Merlet, M. Alouini, J. Lopez, N. Vodjdani et al., Recent Breakthroughs in RF Photonics for Radar Systems, Aerospace and Electronic Systems Magazine, Fourdin et J. Chazelas IEEE, vol.22, issue.2 8, pp.3-8, 2007.

J. Logan, R. T. , L. Maleki, and M. Shadaram, Stabilization of oscillator phase using a fiberoptic delay-line, Dans Frequency Control Symposium, Proceedings of the 45th Annual IEEE International, pp.508-512, 1991.

X. Yao and L. Maleki, Converting light into spectrally pure microwave oscillation, Optics Letters, vol.21, issue.7, pp.483-485, 1996.
DOI : 10.1364/OL.21.000483

X. S. Yao and L. Maleki, Dual microwave and optical oscillator, Optics Letters, vol.22, issue.24, pp.1867-1869, 1997.
DOI : 10.1364/OL.22.001867

T. M. Fortier, M. S. Kirchner, F. Quinlan, J. Taylor, J. C. Bergquist et al., Generation of ultrastable microwaves via optical frequency division, Nature Photonics, vol.54, issue.7, pp.425-429, 2011.
DOI : 10.1038/nphoton.2011.121

J. Darricau, Radars -Principe et éléments de base, E6650. Editions T.I, p.14, 1996.

J. Roger, Antennes -Bases et principes, E3280. Editions T.I, p.15, 1998.

J. Roger, Antennes -Différents types, E3282. Editions T.I, p.15, 1999.

J. Darricau, Radars -Paramètres de détection, E6655. Editions T.I, p.15, 1996.

F. Delaveau and Y. Livran, Radiosurveillance du spectre -Rôle et tendances, TE6890. Editions T.I, p.18, 2012.

F. Delaveau and Y. Livran, Radiosurveillance du spectre -Interception, réception et détection, TE6891. Editions T.I, p.18, 2012.

F. Delaveau and Y. Livran, Radiosurveillance du spectre -Analyse et Identification des transmissions, TE6893. Editions T.I, p.18, 2012.

S. Gribaldo, Modélisation non-linéaire et en bruit de composants micro-ondes pour applications à faible bruit de phase, Thèse de doctorat, p.23, 2008.

E. Rubiola, Phase Noise and Frequency Stability in Oscillators, p.163, 2009.
DOI : 10.1017/CBO9780511812798

URL : https://hal.archives-ouvertes.fr/hal-00344308

G. Sauvage, Phase Noise in Oscillators : A Mathematical Analysis of Leeson's Model, Instrumentation and Measurement, IEEE Transactions on, vol.26, issue.25, pp.408-410, 1977.

D. Leeson, A simple model of feedback oscillator noise spectrum, Proceedings of the IEEE, pp.329-330, 1966.
DOI : 10.1109/PROC.1966.4682

G. , D. Giovanni, and M. Chomiki, New Phase Noise Measurement Techniques and Ultra-Low Noise SAW Oscillators, DIELECTRIC MATERIALS : General information, pp.27-28, 2010.

M. Regis, O. Llopis, B. Van-haaren, R. Plana, A. Gruhle et al., Ultra low phase noise C and X band bipolar transistors dielectric resonator oscillators, Dans Frequency Control Symposium [36] N. Popovic, Review of Some Types of Varactor Tuned DROs, Proceedings of the 1998 IEEE International, pp.507-511, 1998.

E. Ivanov and M. Tobar, Low phase-noise sapphire crystal microwave oscillators : current status, Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on, vol.56, issue.29, pp.263-269, 2009.

C. Rumelhard, MMIC -Évolution et technologie, E1428. Editions T.I, p.30, 2004.

C. Lee, S. Han, B. Matinpour, and J. Laskar, A low phase noise X-band MMIC GaAs MESFET VCO, Microwave and Guided Wave Letters, IEEE, vol.10, issue.8, pp.325-327, 2000.

L. Dussopt, D. Guillois, and G. Rebeiz, A low phase noise silicon 9 GHz VCO and an 18 GHz push-push oscillator, Dans Microwave Symposium Digest, IEEE MTT-S International, vol.22, pp.695-698, 2002.

A. Dec and K. Suyama, Microwave MEMS-based voltage-controlled oscillators, Microwave Theory and Techniques, IEEE Transactions on, vol.48, issue.11, pp.1943-1949, 2000.

E. Park, S. Baek, T. Song, J. Yoon, and E. Yoon, Performance comparison of 5GHz VCOs integrated by CMOS compatible high Q MEMS inductors, Dans Microwave Symposium Digest, IEEE MTT-S International, vol.22, pp.721-724, 2003.

A. Neyer and E. Voges, High???frequency electro???optic oscillator using an integrated interferometer, Applied Physics Letters, vol.40, issue.1, pp.6-32, 1982.
DOI : 10.1063/1.92929

X. Yao, L. Maleki, and L. Davis, Coupled opto-electronic oscillators, Dans Frequency Control Symposium, Proceedings of the 1998 IEEE International, pp.540-544, 1998.

E. Salik, N. Yu, and L. Maleki, Ultra-low phase noise optical pulses generated by coupled opto-electronic oscillator, Dans Lasers and Electro-Optics Conference on, pp.1-35, 2004.

D. Eliyahu and L. Maleki, Modulation response (S21) of the coupled opto-electronic oscillator , Dans Frequency Control Symposium and Exposition, Proceedings of the 2005 IEEE International, pp.850-856, 2005.

D. Eliyahu, D. Seidel, and L. Maleki, RF Amplitude and Phase-Noise Reduction of an Optical Link and an Opto-Electronic Oscillator, Microwave Theory and Techniques, IEEE Transactions on, vol.56, issue.112, pp.449-456, 2008.

V. Ilchenko, J. Byrd, A. Savchenkov, A. Matsko, D. Seidel et al., Miniature oscillators based on optical whispering gallery mode resonators, Dans Frequency Control Symposium, IEEE International, vol.32, pp.305-308, 2008.

K. Volyanskiy, Y. Chembo, L. Larger, and E. Rubiola, Contribution of Laser Frequency and Power Fluctuations to the Microwave Phase Noise of Optoelectronic Oscillators, Lightwave Technology, Journal, vol.28, issue.44, pp.2730-2735, 2010.

W. Li and J. Yao, An Optically Tunable Optoelectronic Oscillator, Lightwave Technology, Journal, vol.28, issue.32, pp.2640-2645, 2010.
DOI : 10.1109/jlt.2010.2058792

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.666.7440

K. Saleh, High spectral purity microwave sources based on optical resonators, pp.44-128, 2012.
URL : https://hal.archives-ouvertes.fr/tel-00764917

W. Loh, S. Yegnanarayanan, J. J. Plant, F. J. O-'donnell, M. E. Grein et al., Low-noise RF-amplifier-free slab-coupled optical waveguide coupled optoelectronic oscillators: physics and operation, Optics Express, vol.20, issue.17, pp.19420-19430, 2012.
DOI : 10.1364/OE.20.019420

W. Loh, S. Yegnanarayanan, J. Klamkin, S. M. Duff, J. J. Plant et al., Amplifier-free slab-coupled optical waveguide optoelectronic oscillator systems, Optics Express, vol.20, issue.17, pp.19589-19598, 2012.
DOI : 10.1364/OE.20.019589

D. Eliyahu and L. Maleki, Low phase noise and spurious level in multi-loop opto-electronic oscillators, Dans Frequency Control Symposium and PDA Exhibition Jointly with the 17th European Frequency and Time Forum, Proceedings of the 2003 IEEE International, pp.405-410, 2003.

X. Yao and L. Maleki, Multiloop optoelectronic oscillator, IEEE Journal of Quantum Electronics, vol.36, issue.1, pp.79-84, 2000.
DOI : 10.1109/3.817641

W. Loh, S. Yegnanarayanan, R. Ram, and P. Juodawlkis, Super-Homogeneous Saturation of Microwave-Photonic Gain in Optoelectronic Oscillator Systems, IEEE Photonics Journal, vol.4, issue.5, pp.1256-1266, 2012.
DOI : 10.1109/JPHOT.2012.2207098

N. Yu, E. Salik, and L. Maleki, Ultralow-noise mode-locked laser with coupled optoelectronic oscillator configuration, Optics Letters, vol.30, issue.10, pp.1231-1233, 2005.
DOI : 10.1364/OL.30.001231

E. Salik, N. Yu, and L. Maleki, An Ultralow Phase Noise Coupled Optoelectronic Oscillator, IEEE Photonics Technology Letters, vol.19, issue.6, pp.444-446, 2007.
DOI : 10.1109/LPT.2007.892907

A. B. Matsko, D. Eliyahu, and L. Maleki, Theory of coupled optoelectronic microwave oscillator II: phase noise, Journal of the Optical Society of America B, vol.30, issue.12, pp.3316-3323, 2013.
DOI : 10.1364/JOSAB.30.003316

M. Faugeron, Diode laser 1,5 µm de puissance et faible bruit pour l'optique hyperfréquences, Thèse de doctorat, p.169, 2012.

J. Klamkin, S. M. Madison, D. C. Oakley, A. Napoleone, F. J. O-'donnell et al., Uni-traveling-carrier variable confinement waveguide photodiodes, Optics Express, vol.19, issue.11, pp.10199-10205, 2011.
DOI : 10.1364/OE.19.010199

M. Chtioui, F. Lelarge, A. Enard, F. Pommereau, D. Carpentier et al., High Responsivity and High Power UTC and MUTC GaInAs-InP Photodiodes, High Responsivity and High Power UTC and MUTC GaInAs-InP Photodiodes, pp.318-320, 2012.
DOI : 10.1109/LPT.2011.2177965

A. A. Savchenkov, A. B. Matsko, V. S. Ilchenko, and L. Maleki, Optical resonators with ten million finesse, Optics Express, vol.15, issue.11, pp.6768-6773, 2007.
DOI : 10.1364/OE.15.006768

K. Vahala, H. Lee, J. Li, and T. Chen, New directions for high-Q microcavities, 2013 IEEE Photonics Conference, pp.229-229, 2013.
DOI : 10.1109/IPCon.2013.6656518

P. H. Merrer, Élaboration de sources hyperfréquences à haute pureté spectrale à base de résonateurs optiques, Thèse de doctorat, p.128, 2009.

A. Matsko and V. Ilchenko, Optical resonators with whispering-gallery modes-part I : basics, Selected Topics in Quantum Electronics, IEEE Journal, vol.12, issue.1, pp.3-14, 2006.

G. Righini, Y. Dumeige, P. Féron, M. Ferrari, G. Nunzi-conti et al., Whispering gallery mode microresonators : Fundamentals and applications, Rivista del Nuovo Cimento, vol.34, issue.7, pp.435-54, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00637767

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, pp.43903-43939, 2004.
DOI : 10.1103/PhysRevLett.92.043903

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

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, pp.63806-63842, 2006.
DOI : 10.1103/PhysRevA.74.063806

R. Drever, J. Hall, F. Kowalski, J. Hough, G. Ford et al., Laser phase and frequency stabilization using an optical resonator, Applied Physics B Photophysics and Laser Chemistry, vol.17, issue.2, pp.97-105, 1983.
DOI : 10.1007/BF00702605

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

V. S. Ilchenko, E. Dale, W. Liang, J. Byrd, D. Eliyahu et al., Compact tunable kHz-linewidth semiconductor laser stabilized with a whispering-gallery mode microresonator, Laser Resonators and Beam Control XIII, p.36, 2011.
DOI : 10.1117/12.895033

V. S. Ilchenko, A. A. Savchenkov, J. Byrd, I. Solomatine, A. B. Matsko et al., Crystal quartz optical whispering-gallery resonators, Optics Letters, vol.33, issue.14, pp.1569-1571, 2008.
DOI : 10.1364/OL.33.001569

L. Maleki, V. Ilchenko, A. Savchenkov, W. Liang, D. Seidel et al., High performance , miniature hyper-parametric microwave photonic oscillator, Dans Frequency Control Symposium (FCS), IEEE International, vol.36, issue.38, pp.558-563, 2010.

P. Merrer, K. Saleh, O. Llopis, S. Berneschi, F. Cosi et al., Characterization technique of optical whispering gallery mode resonators in the microwave frequency domain for optoelectronic oscillators, Applied Optics, vol.51, issue.20, pp.4742-4748, 2012.
DOI : 10.1364/AO.51.004742

URL : https://hal.archives-ouvertes.fr/hal-00798034

A. Matsko, A. Savchenkov, V. Ilchenko, and L. Maleki, Photonic frequency synthesis and control with whispering gallery mode microresonators, Dans Holey Fibers and Photonic Crystals/Polarization Mode Dispersion/Photonics Time/Frequency Measurement and Control, Digest of the LEOS Summer Topical Meetings, p.36, 2003.

A. Savchenkov, V. Ilchenko, J. Byrd, W. Liang, D. Eliyahu et al., Whispering-gallery mode based opto-electronic oscillators, Dans Frequency Control Symposium (FCS), IEEE International, vol.36, pp.554-557, 2010.
DOI : 10.1109/freq.2010.5556268

K. Volyanskiy, P. Salzenstein, H. Tavernier, M. Pogurmirskiy, Y. K. Chembo et al., Compact optoelectronic microwave oscillators using ultra-high Q whispering gallery mode disk-resonators and phase modulation, Optics Express, vol.18, issue.21, pp.18-22358, 2010.
DOI : 10.1364/OE.18.022358

URL : https://hal.archives-ouvertes.fr/hal-00936629

V. Ilchenko, J. Byrd, A. Savchenkov, D. Eliyahu, W. Liang et al., Kerr frequency comb-based Ka-band RF photonic oscillator, Dans European Frequency and Time Forum International Frequency Control Symposium, Joint, vol.37, pp.29-32, 2013.

K. Saleh, A. Fernandez, O. Llopis, and G. Cibiel, Fiber ring resonators with Q factors in excess of 10<sup>10</sup> for time and frequency applications, 2013 Joint European Frequency and Time Forum & International Frequency Control Symposium (EFTF/IFC), pp.33-36, 2013.
DOI : 10.1109/EFTF-IFC.2013.6702282

D. Eliyahu and L. Maleki, Tunable, ultra-low phase noise YIG based opto-electronic oscillator , Dans Microwave Symposium Digest, IEEE MTT-S International, vol.33, issue.45, pp.2185-2187, 2003.

W. Li and J. Yao, A Wideband Frequency Tunable Optoelectronic Oscillator Incorporating a Tunable Microwave Photonic Filter Based on Phase-Modulation to Intensity-Modulation Conversion Using a Phase-Shifted Fiber Bragg Grating, Microwave Theory and Techniques, IEEE Transactions on, vol.60, issue.45, pp.1735-1742, 2012.

J. N. Eckstein, A. I. Ferguson, and T. W. Hänsch, High-Resolution Two-Photon Spectroscopy with Picosecond Light Pulses, Physical Review Letters, vol.40, issue.13, pp.847-887, 1978.
DOI : 10.1103/PhysRevLett.40.847

T. M. Fortier, A. Bartels, and D. S. , Octabe-spanning Ti :sapphire laser with a repetition rate 1 GHz for optical frequency measurements and crepetition, Optics Letters, vol.19, pp.1777-1779, 2006.

F. Baynes, F. Quinlan, T. Fortier, A. Beling, Q. Zhou et al., Optical frequency division for ultralow phase noise microwave generation, 2013 IEEE International Topical Meeting on Microwave Photonics (MWP), pp.333-335, 2013.
DOI : 10.1109/MWP.2013.6724089

A. J. Seeds, K. J. Williams, and M. Photonics, Microwave Photonics, Journal of Lightwave Technology, vol.24, issue.12, pp.4628-4641, 2006.
DOI : 10.1109/JLT.2006.885787

S. Foster, G. A. Cranch, and A. Tikhomirov, frequency noise in erbium-doped fiber lasers, Physical Review A, vol.79, issue.5, pp.53802-52, 2009.
DOI : 10.1103/PhysRevA.79.053802

Z. Fan and M. Dagenais, Optical generation of a mHz linewidth microwave signal with a discriminator-aided phase-locked loop using two semiconductor lasers, IEEE Antennas and Propagation Society International Symposium 1997. Digest, pp.766-769, 1997.
DOI : 10.1109/APS.1997.631574

D. Wake, C. Lima, and P. Davies, Optical generation of millimeter-wave signals for fiberradio systems using a dual-mode DFB semiconductor laser, Microwave Theory and Techniques, IEEE Transactions on, vol.43, issue.9, pp.2270-2276, 1995.

M. Lamponi, M. Chtioui, F. Lelarge, G. Kervella, E. Rouvalis et al., Tunable InP photonic integrated circuit for millimeter wave generation, 2013 International Conference on Indium Phosphide and Related Materials (IPRM), pp.1-2, 2013.
DOI : 10.1109/ICIPRM.2013.6562624

G. Baili, G. Pillet, L. Morvan, M. Alouini, and D. , Dolfi et I. Sagnes, Stabilization of a dualfrequency VECSEL free of relaxation oscillations for microwave photonics applications, Photonics Conference (IPC), 2012 IEEE, pp.16-17, 2012.

J. Maxin, S. Molin, G. Pillet, L. Morvan, A. Mugnier et al., Dualfrequency distributed feedback fibre laser for microwave signals generation, Electronics Letters, vol.42, issue.45, pp.47-816, 2011.

M. Alouini, B. Benazet, M. Vallet, M. Brunel, P. Di-bin et al., Offset phase locking of Er,Yb :glass laser eigenstates for RF photonics applications, Photonics Technology Letters, IEEE, vol.13, issue.41, pp.367-369, 2001.

M. Brunel, F. Bretenaker, S. Blanc, V. Crozatier, J. Brisset et al., High-spectral purity RF beat note generated by a two-frequency solid-state laser in a dual thermooptic and electrooptic phase-locked loop, Photonics Technology Letters, IEEE, vol.41, issue.3, pp.16-870, 2004.

G. Pillet, B. Steinhausser, L. Morvan, J. Schiellein, T. Merlet et al., Stabilized 1.5 microns dual-frequency laser prototype for optical generation of high purity microwave signals, Dans Lasers and Electro-Optics Europe, 2011 Conference on and 12th European Quantum Electronics Conference, pp.1-1, 2011.

G. Pillet, L. Morvan, D. Dolfi, and J. P. Huignard, Highly-tunable optoelectronic microwave oscillator, 2010 IEEE International Topical Meeting on Microwave Photonics, pp.313-316, 2010.
DOI : 10.1109/MWP.2010.5664188

O. Solgaard, J. Park, J. B. Georges, P. Pepeljugoski, and K. Y. Lau, Millimeter wave, multigigahertz optical modulation by feedforward phase noise compensation of a beat note generated by photomixing of two laser diodes, IEEE Photonics Technology Letters, vol.5, issue.5, pp.574-577, 1993.
DOI : 10.1109/68.215286

R. Steed, L. Ponnampalam, M. Fice, C. C. Renaud, D. Rogers et al., Hybrid Integrated Optical Phase-Lock Loops for Photonic Terahertz Sources, Selected Topics in Quantum Electronics, IEEE Journal, vol.17, issue.1, pp.210-217, 2011.

L. Langley, M. D. Elkin, C. Edge, M. Wale, U. Gliese et al., Packaged semiconductor laser optical phase-locked loop (OPLL) for photonic generation, processing and transmission of microwave signals, Microwave Theory and Techniques, IEEE Transactions on, issue.7, pp.47-1257, 1999.

H. Rideout, J. Seregelyi, S. Paquet, and J. Yao, Discriminator-Aided Optical Phase-Lock Loop Incorporating a Frequency Down-Conversion Module, Photonics Technology Letters, IEEE, vol.18, issue.22, pp.2344-2346, 2006.

J. Yao, Microwave Photonics, Lightwave Technology, Journal, vol.27, issue.3, pp.314-335, 2009.

M. Brunel, O. Emile, F. Bretenaker, A. Lefloch, B. Ferrand et al., Tunable Two-Frequency Lasers for Lifetime Measurements, Optical Review, vol.27, issue.5, pp.550-552, 1997.
DOI : 10.1007/s10043-997-0550-y

W. Loh, J. De-sandro, G. Cowle, B. Samson, and A. Ellis, 40 GHz optical-millimetre wave generation with a dual polarisation distributed feedback fibre laser, Electronics Letters, vol.33, issue.7, pp.594-595, 1997.
DOI : 10.1049/el:19970371

L. Morvan, N. D. Lai, D. Dolfi, J. Huignard, M. Brunel et al., Building blocks for a two-frequency laser lidar-radar: a preliminary study, Applied Optics, vol.41, issue.27, pp.41-5702, 2002.
DOI : 10.1364/AO.41.005702

J. L. Gouët, L. Morvan, M. Alouini, J. Bourderionnet, D. Dolfi et al., Dual-frequency single-axis laser using a lead lanthanum zirconate tantalate (PLZT) birefringent etalon for millimeter wave generation: beyond the standard limit of tunability, Optics Letters, vol.32, issue.9, pp.1090-1092, 2007.
DOI : 10.1364/OL.32.001090

G. Pillet, L. Morvan, M. Brunel, F. Bretenaker, D. Dolfi et al., Dual-Frequence Laser at 1.5 µm for Optical Distribution and Generation of High-Purity Microwave Signals, Lightwave Technology, Journal, vol.26, issue.121, pp.2764-2773, 2008.

G. Baili, L. Morvan, M. Alouini, D. Dolfi, F. Bretenaker et al., Experimental demonstration of a tunable dual-frequency semiconductor laser free of relaxation oscillations, Optics Letters, vol.34, issue.21, pp.3421-3423, 2009.
DOI : 10.1364/OL.34.003421

URL : https://hal.archives-ouvertes.fr/hal-00664805

G. H. Haertling and C. E. Land, Ferroelectric Ceramics for Electrooptic Applications, Journal of the American Ceramic Society, vol.11, issue.12, pp.1-11, 1971.
DOI : 10.1111/j.1151-2916.1970.tb12105.x-i1

F. Bretenaker, Laser Physics, p.59, 2009.

G. Baili, Contribution à la réduction du bruit d'intensité relatif des lasers à semiconducteurs pour des applications radars, Thèse de doctorat, p.60, 2008.

C. Svelto, S. Taccheo, E. Bava, and P. Laporta, Characterization of Yb???Er:glass lasers at 1.5 ??m wavelength in terms of amplitude and frequency stability, Measurement, vol.26, issue.2, pp.119-128, 1999.
DOI : 10.1016/S0263-2241(99)00024-X

M. Brunel, A. Amon, and M. Vallet, Dual-polarization microchip laser at 153??m, Optics Letters, vol.30, issue.18, pp.2418-2420, 2005.
DOI : 10.1364/OL.30.002418

C. W. Gardiner, Handbook of stochastic methods for physics, chemistry, and the natural sciences, Includes bibliographical references (p. [393]-402) and indexes, p.61, 2004.

M. Alouini, M. Brunel, F. Bretenaker, M. Vallet, and A. L. Floch, Dual tunable wavelength Er,Yb :glass laser for terahertz beat frequency generation, Photonics Technology Letters, IEEE, vol.10, issue.11, pp.1554-1556, 1998.

Y. Li, S. Goldwasser, and P. Herczfeld, Optically generated dynamically tunable, low noise millimeter wave signals using microchip solid state lasers, Dans Microwave Symposium Digest, IEEE MTT-S International, vol.22, pp.1391-1394, 2003.

G. Pillet, Lidar-radar pour télémétrie laser haute résolution, Thèse de doctorat, pp.65-71, 2013.

G. Cibiel, M. Regis, E. Tournier, and O. Llopis, AM noise impact on low level phase noise measurements, Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on, vol.49, issue.103, pp.784-788, 2002.

P. Butterworth, Méthode de conception des mélangeurs millimétriques Application à la réalisation MMIC d'un mélangeur sous-harmonique à FET froid [42-43.5 GHz, Thèse de doctorat, 2003.

D. Tulchinsky and K. Williams, Excess amplitude and excess phase noise of RF photodiodes operated in compression, Photonics Technology Letters, IEEE, vol.17, issue.112, pp.654-656, 2005.

A. Joshi and S. Datta, Dual InGaAs Photodiodes Having High Phase Linearity for Precise Timing Applications, Photonics Technology Letters, IEEE, vol.21, issue.112, pp.1360-1362, 2009.

J. Taylor, S. Datta, A. Hati, C. Nelson, F. Quinlan et al., Characterization of Power-to-Phase Conversion in High-Speed P-I-N Photodiodes, IEEE Photonics Journal, vol.3, issue.1, pp.140-151, 2011.
DOI : 10.1109/JPHOT.2011.2109703

W. Zhang, T. Li, M. Lours, S. Seidelin, G. Santarelli et al., Amplitude to phase conversion of InGaAs pin photo-diodes for femtosecond lasers microwave signal generation, Applied Physics B, vol.277, issue.2, pp.301-308, 2012.
DOI : 10.1007/s00340-011-4710-1

D. H. Phung, M. Lintz, and C. Alexandre, Dynamics of the amplitude to phase coupling in 1.5 µm high bandwidth photodiodes, Microwave Theory and Techniques, IEEE Transactions on, p.112, 2013.

M. Chtioui, Photodiodes UTC de puissance pour les liaisons optiques/hyperfréquence et la sommation de signaux hyperfréquences par voies optique, Thèse de doctorat, p.113, 2008.

K. Williams, R. Esman, and M. Dagenais, Nonlinearities in p-i-n microwave photodetectors, Lightwave Technology, Journal, vol.14, issue.114, pp.84-96, 1996.

K. Williams, Comparisons between dual-depletion-region and uni-travelling-carrier p-i-n photodetectors, Optoelectronics, IEE Proceedings, vol.149, issue.4, pp.131-137, 2002.

A. E. Amili, G. Kervella, and M. Alouini, Experimental evidence and theoretical modeling of two-photon absorption dynamics in the reduction of intensity noise of solid-state Er:Yb lasers, Optics Express, vol.21, issue.7, pp.8773-8780, 2013.
DOI : 10.1364/OE.21.008773

URL : https://hal.archives-ouvertes.fr/hal-00790606

L. Maleki, Optoelectronic Oscillator, Nature Photonics, vol.5, pp.728-730, 2011.
DOI : 10.1201/b11444-27

A. Matsko, Practical Applications of Microresonators in Optics and Photonics, p.128, 2009.
DOI : 10.1201/9781420065794

S. and N. Molin, Augmentation de la profondeur de modulation de signaux hyperfréquences sur porteuse optique par effets non linéaires dans les fibres, Thèse de doctorat, p.130, 2004.

G. Pillet, L. Morvan, L. Menager, A. Garcia, S. Babiel et al., 100 GHz phase-locked dual-frequency laser, 2012 IEEE International Topical Meeting on Microwave Photonics, pp.39-42, 2012.
DOI : 10.1109/MWP.2012.6474048

E. D. Black, An introduction to Pound???Drever???Hall laser frequency stabilization, American Journal of Physics, vol.69, issue.1, pp.79-87, 2000.
DOI : 10.1119/1.1286663

F. Quinlan, S. Ozharar, S. Gee, and P. J. Delfyett, Harmonically mode-locked semiconductor-based lasers as high repetition rate ultralow noise pulse train and optical frequency comb sources, Journal of Optics A: Pure and Applied Optics, vol.11, issue.10, pp.103001-165, 2009.
DOI : 10.1088/1464-4258/11/10/103001

A. B. Matsko, D. Eliyahu, P. Koonath, D. Seidel, and L. Maleki, Theory of coupled optoelectronic microwave oscillator I: expectation values, Journal of the Optical Society of America B, vol.26, issue.5, pp.1023-1031, 2009.
DOI : 10.1364/JOSAB.26.001023

F. Quinlan, C. Williams, S. Ozharar, S. Gee, and P. Delfyett, Self-Stabilization of the Optical Frequencies and the Pulse Repetition Rate in a Coupled Optoelectronic Oscillator, Lightwave Technology, Journal, vol.26, issue.15, pp.2571-2577, 2008.

J. N. Walpole, E. S. Kintzer, S. R. Chinn, C. A. Wang, and L. J. Missaggia, High???power strained???layer InGaAs/AlGaAs tapered traveling wave amplifier, Applied Physics Letters, vol.61, issue.7, pp.61-740, 1992.
DOI : 10.1063/1.107783

D. Garbuzov, L. Xu, S. Forrest, R. Menna, R. Martinelli et al., 1.5 [micro sign]m wavelength, SCH-MQW InGaAsP/InP broadened-waveguide laser diodes with low internal loss and high output power, Electronics Letters, vol.32, issue.18, pp.1717-167, 1996.
DOI : 10.1049/el:19961098

K. Morito, S. Tanaka, S. Tomabechi, and A. Kuramata, A broad-band MQW semiconductor optical amplifier with high saturation output power and low noise figure, Photonics Technology Letters, IEEE, vol.17, issue.5, pp.974-976, 2005.

E. A. Marcatili, Slab-Coupled Waveguides, Bell System Technical Journal, vol.53, issue.4, pp.645-674, 1974.
DOI : 10.1002/j.1538-7305.1974.tb02762.x

J. Walpole, J. Donnelly, P. J. Taylor, L. Missaggia, C. Harris et al., Slab-coupled 1.3-µm semiconductor laser with single-spatial large-diameter mode, Photonics Technology Letters, issue.6, pp.14-756, 2002.

J. Plant, P. Juodawlkis, R. Huang, J. Donnelly, and L. Missaggia, Ray, 1.5 µm InGaAsP- InP slab-coupled optical waveguide lasers, Photonics Technology Letters, IEEE, vol.17, issue.4, pp.735-737, 2005.

T. Akiyama, M. Ekawa, M. Sugawara, K. Kawaguchi, H. Sudo et al., An ultrawide-band semiconductor optical amplifier having an extremely high penalty-free output power of 23 dBm achieved with quantum dots, IEEE Photonics Technology Letters, vol.17, issue.8, pp.17-1614, 2005.
DOI : 10.1109/LPT.2005.851884

S. Gee, S. Ozharar, F. Quinlan, P. Delfyett, J. Plant et al., Attosecond timing jitter actively modelocked semiconductor fiber ring laser with normal net cavity dispersion, Dans Lasers and Electro-Optics, pp.1-2, 2007.

C. Depriest, T. Yilmaz, J. Delfyett, P. J. , S. Etemad et al., Ultralow noise and supermode suppression for high-speed photonic sampling with a semiconductor diode ring laser, Dans Lasers and Electro-Optics, pp.606-607, 2002.

E. S. Georges, Experimental study of four-wave mixing on dispersion-shifted fiber and low dispersion fibers with a dense multiwavelength source, Dans Optical Fiber Communication, pp.67-69, 1997.