]. A. Agn97, E. Agnesi, and G. C. Piccinini, Redistribution subject to AIP license or copyright; see http://apl.aip.org/about/rights_and_permissions Bibliographie Reali et C. Solcia, All-solid-state picosecond tunable source of near-infrared radiation, Opt. Lett, issue.18, pp.22-14151417, 1997.

]. A. Agn99, S. Agnesi, G. Dell-'acqua, and . Reali, Nonlinear mirror mode-locking of eciently diode-pumped pulsed neodymium lasers, J. Opt. Soc. Am. B, vol.16, issue.8, p.12361242, 1999.

]. S. Akh68, A. Akhmanov, K. Chirkin, A. Drabovich, R. Kovrigin et al., Nonstationary nonlinear optical eects and ultrashort light pulse formation, Quantum Electronics IEEE Journal, vol.4, issue.10, pp.598-605, 1968.

]. G. Anc00, N. Anctil, M. Mccarthy, and . Piché, Sensitivity of a Three-Mirror Cavity to Thermal and Nonlinear Lensing: Gaussian-Beam Analysis, Appl. Opt, vol.39, issue.36, p.67876798, 2000.

]. G. Ari99 and . Arisholm, Quantum noise initiation and macroscopic uctuations in optical parametric oscillators, J. Opt. Soc. Am. B, vol.16, issue.1, p.117127, 1999.

]. G. Ari07 and . Arisholm, General analysis of group velocity eects in collinear optical parametric ampliers and generators, Opt. Express, vol.15, issue.10, p.65136527, 2007.

]. J. Arm62a, N. Armstrong, J. Bloembergen, P. S. Ducuing, and . Pershan, Interactions between Light Waves in a Nonlinear Dielectric, Phys. Rev, vol.127, issue.6, p.19181939, 1962.

J. A. Armstrong, N. Bloembergen, J. Ducuing, and P. S. Pershan, Interactions between Light Waves in a Nonlinear Dielectric, Resonances, p.19181939, 1962.
DOI : 10.1142/9789814540223_0041

]. G. Ass93, G. Assanto, M. Stegeman, E. V. Sheik-bahae, and . Stryland, All-optical switching devices based on large nonlinear phase shifts from second harmonic generation, Applied Physics Letters, vol.62, issue.12, p.13231325, 1993.

]. H. Bibliographie-[-bak89, P. C. Bakker, H. G. Planken, and . Muller, Numerical calculation of optical frequency-conversion processes: a new approach, J. Opt. Soc. Am. B, vol.6, issue.9, p.16651672, 1989.

J. Barr, Modelocking using mirrors with intensity dependent reflection coefficients, Optics Communications, vol.70, issue.3, pp.229-233, 1989.
DOI : 10.1016/0030-4018(89)90071-0

J. R. Barr and D. W. Hughes, Coupled cavity modelocking of a Nd:YAG laser using second-harmonic generation, Applied Physics B Photophysics and Laser Chemistry, vol.85, issue.4, p.325, 1989.
DOI : 10.1007/BF00324180

]. J. Bar91 and . Barr, Numerical simulation of a modelocked laser with an intracavity nonlinear mirror based on second harmonic generation, Optics Communications, vol.8134, pp.215-221, 1991.

]. M. Bec82, Y. Becker, S. Kim, E. Gautam, and . Powers, Three-wave nonlinear optical interactions in dispersive media, Quantum Electronics IEEE Journal, vol.18, issue.1, pp.113-123, 1982.

]. A. Ber08, F. Berrou, M. Marnas, A. Raybaut, M. Godard et al., Mid-IR Photoacoustic Spectroscopy by Use of an Entangled-Cavity Doubly Resonant OPO, Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science Conference and Photonic Applications Systems Technologies, p.6, 2008.

]. A. Ber10a, M. Berrou, A. Raybaut, M. Godard, and . Lefebvre, High-resolution photoacoustic and direct absorption spectroscopy of main greenhouse gases by use of a pulsed entangled cavity doubly resonant OPO, Appl. Phys. B: Lasers Opt, vol.98, issue.1, p.217230, 2010.

]. P. Ber10b, K. L. Berry, and . Schepler, High-power, widely-tunable Cr2+:ZnSe master oscillator power amplier systems, Opt. Express, vol.18, issue.14, p.1506215072, 2010.

]. K. Bhu09, J. D. Bhupathiraju, F. Rowley, and . Ganikhanov, Ecient picosecond optical parametric oscillator based on periodically poled lithium tantalate, Applied Physics Letters, vol.95, issue.8, p.81111, 2009.

]. G. Blo10, A. Bloom, E. Grisard, C. Lallier, M. Larat et al., Optical parametric amplication of a distributed-feedback quantum-cascade laser in orientationpatterned GaAs, Opt. Lett, vol.35, issue.4, p.505507, 2010.

F. Boîtier, Absorption à deux photons et eets de corrélations quantiques dans les semi-conducteurs, Thèse de doctorat, 2010.

]. A. Bon10, R. Bonnefois, M. Bierent, A. Raybaut, S. Godard et al., SCALPEL: a long range free-space optical communication system with adaptive optics in the MIR bandwidth, Proc. SPIE, pp.7828-78280, 2010.

B. Boulanger, J. Zyss-Édité-par, H. Fuess, T. Hahn, H. Wondratschek et al., Nonlinear optical properties, in International Tables for Crystallography Volume D: Physical properties of crystals, v. D de International Tables for Crystallography, p.178219, 2006.

]. A. Bra95, G. Braun, X. Korn, D. Liu, J. Du et al., Self-channeling of high-peak-power femtosecond laser pulses in air, Opt. Lett, vol.20, issue.1, p.7375, 1995.

P. Brand, Study of 5generation, Thèse de doctorat, 2010.
URL : https://hal.archives-ouvertes.fr/tel-00646086

]. I. Buc91a, S. Buchvarov, K. Saltiel, D. Stankov, and . Georgiev, Extremely long train of ultra short pulses from an actively mode-locked pulsed Nd: YAG laser, Optics Communications, vol.83, issue.12, pp.65-70, 1991.

]. I. Buc91b, K. Buchvarov, S. Stankov, and . Saltiel, Pulse shortening in an actively mode-locked laser with a frequency-doubling nonlinear mirror, Optics Communications, vol.83, pp.3-4, 1991.

]. I. Buc94, G. Buchvarov, S. Christov, and . Saltiel, Transient behaviour of frequency doubling mode-locker. Numerical analysis, Optics Communications, vol.10734, pp.281-286, 1994.

. Chicklis, Ecient mid-infrared laser using 1.9-µm-pumped Ho:YAG and ZnGeP2 optical parametric oscillators, J. Opt. Soc. Am. B, vol.17, issue.5, p.723728, 2000.

]. J. Cai86, M. D. Caird, T. A. Shinn, L. K. Kircho, R. E. Smith et al., Measurements of losses and lasing eciency in GSGG:Cr, Nd and YAG:Nd laser rods, Appl. Opt, issue.23, pp.25-42944305, 1986.

]. H. Can08, U. Cankaya, A. K. Demirbas, A. Erdamar, and . Sennaroglu, Absorption saturation analysis of Cr2+:ZnSe and Fe2+:ZnSe, J. Opt. Soc. Am. B, vol.25, issue.5, p.794800, 2008.

]. T. Bibliographie-[-car90, I. N. Carruthers, and . Iii, Passive laser mode locking with an antiresonant nonlinear mirror, Opt. Lett, vol.15, issue.14, p.804806, 1990.

]. T. Car00, G. J. Carrig, A. Wagner, J. Y. Sennaroglu, C. R. Jeong et al., Mode-locked Cr2+:ZnSe laser, Opt. Lett, vol.25, issue.3, p.168170, 2000.

]. G. Cer94, S. D. Cerullo, V. Silvestri, L. Magni, and . Pallaro, Resonators for Kerr-lens modelocked femtosecond Ti:sapphire lasers, Opt. Lett, vol.19, issue.11, p.807809, 1994.

]. G. Cer95a, V. Cerullo, A. Magni, and . Monguzzi, Group-velocity mismatch compensation in continuous-wave lasers mode locked by second-order nonlinearities, Opt. Lett, vol.20, issue.17, p.17851787, 1995.

]. G. Cer95b, S. D. Cerullo, A. Silvestri, D. Monguzzi, V. Segala et al., Self-starting mode locking of a cw Nd:YAG laser using cascaded second-order nonlinearities, Opt. Lett, vol.20, issue.7, p.746748, 1995.

]. E. Che94, K. Cheung, G. T. Koch, and . Moore, Silver thiogallate, singly resonant optical parametric oscillator pumped by a continuous-wave mode-locked Nd:YAG laser, Opt. Lett, vol.19, issue.9, p.631633, 1994.

]. O. Che98, V. A. Chekhlov, and . Zaporozhchenko, Mapping of the second-harmonic nonlinear mirror characteristics for laser mode locking and pulse shortening, J. Opt. Soc. Am

S. Chenais, Nouveaux matériaux laser dopés à l'ytterbium : performances en pompage par diode et étude des eets thermiques, Thèse de doctorat, 2002.

]. M. Ciz09, H. Cizmeciyan, A. Cankaya, A. Kurt, and . Sennaroglu, Kerr-lens mode-locked femtosecond Cr2+:ZnSe laser at 2420 nm, Opt. Lett, vol.34, issue.20, p.30563058, 2009.

V. Courderc, Laser Nd : YAG pompés par diode lasers : -Optimisation du rendement en régime continu ; -Fonctionnement en régime modes bloqués par miroir non linéaire à cristal doubleur, Thèse de doctorat, 1995.

]. V. Cou03, A. Couderc, A. Albert, and . Barthélémy, Low repetition rate of a mode locked Nd:YAG laser using quadratic polarization switching, Optics Communications, vol.220, pp.4-6, 2003.

]. M. Dan94, G. Danailov, V. Cerullo, D. Magni, S. D. Segala et al., Nonlinear mirror mode locking of a cw Nd:YLF laser, Opt. Lett, vol.19, issue.11, p.792794, 1994.

]. P. Dat04a, S. Datta, A. Mukhopadhyay, and . Agnesi, Stability regime study of a nonlinear mirror mode-locked laser, Optics Communications, vol.230, issue.4-6, pp.4-6, 2004.
DOI : 10.1016/j.optcom.2003.11.018

]. P. Dat04b, . Datta, S. Shivanand, A. Mukhopadhyay, A. Agnesi et al., Picosecond Pulse Generation and its Simulation in a Nonlinear Optical Mirror Mode-Locked Laser, Appl. Opt, vol.43, issue.11, p.23472352, 2004.

]. L. Del96, R. Deloach, G. Page, S. Wilke, W. Payne et al., Transition metal-doped zinc chalcogenides: spectroscopy and laser demonstration of a new class of gain media, Quantum Electronics IEEE Journal, vol.32, issue.6, pp.885-895, 1996.

]. R. Des92, D. J. Desalvo, M. Hagan, G. Sheik-bahae, E. W. Stegeman et al., Self-focusing and self-defocusing by cascaded second-order eects in KTP, Opt. Lett, vol.17, issue.1, p.2830, 1992.

]. Dhe10, J. Dherbecourt, M. Melkonian, A. Raybaut, M. Godard et al., Mode-Locking of a Cr2+: ZnSe Laser Using a PPLN Nonlinear Mirror: Theoretical Modelling and Cavity Design, Conference on Lasers and Electro-Optics, p.97, 2010.

]. C. Fal95, B. Fallnich, T. Rung, A. Herrmann, R. Nebel et al., Experimental investigation and numerical simulation of the inuence of resonator-length detuning on the output power, pulse duration and spectral width of a cw mode-locked picosecond optical parametric oscillator, Applied Physics B: Lasers and Optics, vol.60, p.427436, 1995.

]. M. Fej92, G. A. Fejer, D. H. Magel, R. L. Jundt, and . Byer, Quasi-phase-matched second harmonic generation: tuning and tolerances, IEEE J. Quantum Electron, vol.28, issue.11, p.26312654, 1992.

]. G. Fib00, A. L. Fibich, and . Gaeta, Critical power for self-focusing in bulk media and in hollow waveguides, Opt. Lett, vol.25, issue.5, p.335337, 2000.

]. D. Fin66, R. Findlay, and . Clay, The measurement of internal losses in 4-level lasers, Physics Letters, vol.20, issue.3, pp.277-278, 1966.

]. J. Fos72 and . Foster, Mode-locked frequency doubled laser, 1972.

]. D. Geo92, J. Georgiev, U. Herrmann, and . Stamm, Cavity design for optimum nonlinear absorption in Kerr-lens mode-locked solid-state lasers, Optics Communications, vol.92, pp.4-6, 1992.

]. A. Bibliographie-[-god10, M. Godard, T. Raybaut, M. Schmid, A. Lefebvre et al., Development of a compact frequency conversion module for airborne countermeasures, Proc. SPIE, p.7836

]. D. Gra96, B. M. Gragson, G. L. Mccarty, D. S. Richmond, and . Alavi, High-power broadly tunable picosecond IR laser system for use in nonlinear spectroscopic applications, J. Opt. Soc. Am. B, vol.13, issue.9, p.20752083, 1996.

]. K. Ham91, K. A. Hamal, H. Stankov, I. Jelinkova, M. Prochazka et al., Mode-locking of a ashlamp pumped Ti:sapphire laser using the frequency doubling nonlinear mirror, International Symposium on Ultrafast Processes in Spectroscopy, v. 126 de Inst. Phys. Conf. Ser, p.5962, 1991.

]. D. Han01, M. V. Hanna, M. A. O-'connor, D. P. Watson, and . Shepherd, Synchronously pumped optical parametric oscillator with diraction-grating tuning, Journal of Physics D: Applied Physics, vol.34, issue.16, p.2440, 2001.

]. R. Har77, G. T. Harris, G. A. Johnston, P. C. Kepple, H. Krok et al., Infrared thermooptic coecient measurement of polycrystalline ZnSe, crystal KCI, and TI-20 glass, p.436438, 1977.

]. F. Hei92, E. Heine, G. Heumann, K. L. Huber, and . Schepler, Mode locking of roomtemperature cw thulium and holmium lasers, Applied Physics Letters, vol.60, issue.10, pp.1161-1162, 1992.

M. Henriksson, Tandem optical parametric oscillators using volume Bragg grating spectral control, Thèse de doctorat, 2010.

]. J. Her94 and . Herrmann, Theory of Kerr-lens mode locking: role of self-focusing and radially varying gain, J. Opt. Soc. Am. B, vol.11, issue.3, p.498512, 1994.

]. S. Hol05, V. Holmgren, F. Pasiskevicius, and . Laurell, Generation of 2.8 ps pulses by modelocking a Nd:GdVO4 laser with defocusing cascaded Kerr lensing in periodically poled KTP, Opt. Express, vol.13, issue.14, p.52705278, 2005.

]. D. Hua92, M. Huang, L. H. Ulman, H. A. Acioli, J. G. Haus et al., Self-focusinginduced saturable loss for laser mode locking, Opt. Lett, vol.17, issue.7, p.511513, 1992.

]. X. Hua96, W. K. Huang, S. P. Lee, J. Y. Wong, Z. X. Zhou et al., Eects of thermal lensing on stability and astigmatic compensation of a Z-fold laser cavity, J. Opt

]. H. Ili10, I. Iliev, S. Buchvarov, V. Kurimura, and . Petrov, High-power picosecond Nd:GdVO4 laser mode locked by SHG in periodically poled stoichiometric lithium tantalate, Opt. Lett, vol.35, issue.7, p.10161018, 2010.

]. G. Bibliographie-[-ime98, M. Imeshev, M. M. Proctor, and . Fejer, Phase correction in double-pass quasiphase-matched second-harmonic generation with a wedged crystal, Opt. Lett, vol.23, issue.3, p.165167, 1998.

J. Jaeck, Emission infrarouge sous champ électrique dans le cristal de ZnSe dopée chrome, Thèse de doctorat, 2009.

]. D. Jun97 and . Jundt, Temperature-dependent Sellmeier equation for the index of refraction, ne, in congruent lithium niobate, Opt. Lett, vol.22, issue.20, p.15531555, 1997.

]. V. Kal95, V. P. Kalashnikov, V. P. Kalosha, I. G. Mikhailov, and . Poloyko, Self-mode locking of four-mirror-cavity solid-state lasers by Kerr self-focusing

]. V. Kal03, E. Kalashnikov, I. Sorokin, and . Sorokina, Multipulse operation and limits of the Kerr-lens mode-locking stability, Quantum Electronics IEEE Journal, vol.39, issue.2, pp.323-336, 2003.

]. S. Küc02 and . Kück, Spectroscopy and laser characteristics of Cr2+-doped chalcogenide crystals overview and recent results, Journal of Alloys and Compounds, vol.341, issue.12, pp.28-33, 2002.

]. U. Kel96, K. J. Keller, F. X. Weingarten, D. Kartner, B. Kopf et al., Semiconductor saturable absorber mirrors (SESAM's) for femtosecond to nanosecond pulse generation in solid-state lasers, IEEE J. Sel. Topics Quantum Electron, vol.2, issue.3, p.435453, 1996.

]. G. Ken98, D. T. Kennedy, A. Reid, M. Miller, H. Ebrahimzadeh et al., Arvidsson et F. Laurell, Near-to mid-infrared picosecond optical parametric oscillator based on periodically poled RbTiOAsO4, Opt. Lett, vol.23, issue.7, p.503505, 1998.

]. J. Kha94, J. H. Khaydarov, K. D. Andrews, and . Singer, Pulse compression in a synchronously pumped optical parametric oscillator from group-velocity mismatch

]. J. Kha95, J. H. Khaydarov, K. D. Andrews, and . Singer, Pulse-compression mechanism in a synchronously pumped optical parametric oscillator, J. Opt. Soc. Am. B, vol.12, issue.11, p.21992208, 1995.

]. F. Kie10, K. K. Kienle, S. Chen, C. B. Ul-alam, J. I. Gawith et al., High-power, variable repetition rate, picosecond optical parametric oscillator pumped by an amplied gain-switched diode, Opt. Express, vol.18, issue.8, p.76027610, 2010.

]. V. Bibliographie-[-kis04, V. G. Kisel, N. V. Shcherbitsky, V. I. Kuleshov, L. I. Konstantinov et al., Sorokin et I. Sorokina, Emission lifetime measurements and laser performance of Cr:ZnSe under diode pumping at 1770 nm, Advanced Solid-State Photonics, p.16, 2004.

W. Koechner, Thermal Lensing in a Nd:YAG Laser Rod, Applied Optics, vol.9, issue.11, pp.2548-2553, 1970.
DOI : 10.1364/AO.9.002548

]. H. Kog72, E. Kogelnik, A. Ippen, C. Dienes, and . Shank, Astigmatically compensated cavities for CW dye lasers, Quantum Electronics IEEE Journal, vol.8, issue.3, pp.373-379, 1972.

]. O. Kok09, A. Kokabee, M. Esteban-martin, and . Ebrahim-zadeh, Extended-cavity, tunable, GHz-repetition-rate femtosecond optical parametric oscillator pumped at 76 MHz, Opt. Express, vol.17, issue.18, p.1563515640, 2009.

]. O. Kok10, A. Kokabee, M. Esteban-martin, and . Ebrahim-zadeh, Ecient, high-power, ytterbium-ber-laser-pumped picosecond optical parametric oscillator, Opt. Lett, vol.35, p.32103212, 2010.

. Tm, Ho-codoped laser at 2060 nm, Opt. Lett, vol.35, issue.18, p.30273029, 2010.

]. L. Lef98, K. Lefort, G. W. Puech, Y. P. Ross, D. C. Svirko et al., Optical parametric oscillation out to 6.3 mu m in periodically poled lithium niobate under strong idler absorption, Applied Physics Letters, vol.73, issue.12, p.16101612, 1998.

]. Lin95, Y. Lin, W. Lai, and . Hsieh, Simple analytical method of cavity design for astigmatism-compensated Kerr-lens mode-locked ring lasers and its applications, Journal of the Optical Society of America B, vol.12, issue.3
DOI : 10.1364/JOSAB.12.000468

]. Lin05, W. Lin, W. Yang, K. Hsieh, and . Lin, Low threshold and high power output of a diode-pumped nonlinear mirror mode-locked Nd:GdVO4 laser, Optics Express, vol.13, issue.17, p.63236329, 2005.
DOI : 10.1364/OPEX.13.006323

]. S. Lou01a, V. Louis, F. Couderc, P. Louradour, A. Faugeras et al., Nonlinear polarization evolution in type I and type II second-harmonic-generation crystals applied to the mode locking of a pulsed Nd:YAG laser, Journal of Optics A: Pure and Applied Optics, vol.3, issue.2, p.139, 2001.

]. F. Lou01b, A. Louradour, A. Mugnier, V. Albert, A. Couderc et al., Numerical study of quadratic polarization switching mode locking applied to femtosecond pulse generation, Optics Communications, vol.188, pp.5-6, 2001.

]. V. Bibliographie-[-mag93a, G. Magni, S. D. Cerullo, and . Silvestri, ABCD matrix analysis of propagation of gaussian beams through Kerr media, Optics Communications, vol.96, pp.4-6, 1993.

]. V. Mag93b, G. Magni, S. D. Cerullo, and . Silvestri, Closed form gaussian beam analysis of resonators containing a Kerr medium for femtosecond lasers, Optics Communications, vol.101, pp.5-6, 1993.

]. V. Mag96 and . Magni, Perturbation theory of nonlinear resonators with an application to Kerrlens mode locking, J. Opt. Soc. Am. B, vol.13, issue.11, p.24982507, 1996.

]. A. Man99, P. Mani, and P. A. Hollander, Thiry et A. Peremans, All-solid-state 12 ps actively passively mode-locked pulsed Nd:YAG laser using a nonlinear mirror, Applied Physics Letters, vol.75, issue.20, p.30663068, 1999.

]. S. Mar00, R. Marzenell, R. Beigang, and . Wallenstein, Limitations and guidelines for measuring the spectral width of ultrashort light pulses with a scanning Fabry-Pérot interferometer, Applied Physics B: Lasers and Optics, vol.71, p.185191, 2000.

]. K. Mas66, S. Masumoto, W. Isomura, and . Goto, The preparation and properties of ZnSiAs2, ZnGeP2 and CdGeP2 semiconducting compounds, Journal of Physics and Chemistry of Solids, vol.27, pp.11-12, 1939.

]. R. Mau09, I. Maulini, A. Dunayevskiy, A. Lyakh, C. Tsekoun et al., Widely tunable high-power external cavity quantum cascade laser operating in continuous-wave at room temperature, Electron. Lett, vol.45, issue.2, p.107108, 2009.

]. K. Mce98 and . Mcewan, High-power synchronously pumped AgGaS2 optical parametric oscillator, Opt. Lett, vol.23, issue.9, p.667669, 1998.

J. Melkonian, Mise en forme spectrale et temporelle de sources optiques infrarouges par mélange non-linéaire à trois ondes, 2007.

G. Mennerat, Conception, modélisation et réalisation d'une source cohérente de forte énergie accordable dans le moyen infrarouge, Thèse de doctorat, 2000.

]. S. Mir07, V. Mirov, I. Fedorov, D. Moskalev, and . Martyshkin, Recent Progress in Transition- Metal-Doped II ndash;VI Mid-IR Lasers, Selected Topics in Quantum Electronics, IEEE Journal, vol.13, issue.3, pp.810-822, 2007.

]. I. Mos08a, V. Moskalev, S. Fedorov, and . Mirov, Self-starting Kerr-mode-locked polycrystalline Cr2+:ZnSe laser, in Lasers and Electro-Optics, Conference on, pp.1-2, 2008.

]. I. Mos08b, V. V. Moskalev, S. B. Fedorov, and T. Mirov, Single-Frequency, and Multi- Watt Continuous-Wave Cr2+:ZnSe Lasers, Opt. Express, vol.16, issue.6, p.41454153, 2008.

]. I. Mos09a, V. V. Moskalev, S. B. Fedorov, and . Mirov, 10-Watt, pure continuous-wave, polycrystalline Cr2+:ZnS laser, Opt. Express, vol.17, issue.4, p.20482056, 2009.

]. I. Mos09b, V. V. Moskalev, S. B. Fedorov, P. A. Mirov, K. L. Berry et al., 12-Watt CW Polycrystalline Cr2+:ZnSe Laser Pumped by Tm-Fiber Laser, Advanced Solid-State Photonics, OSA Technical Digest Series (CD), p.30, 2009.

]. I. Mos10, V. V. Moskalev, S. B. Fedorov, and . Mirov, Highly-Ecient, Widely-Tunable, Mid-IR Cr:ZnS and Cr:ZnSe CW Lasers Pumped by 1685 nm InP Laser Diode, Advanced Solid-State Photonics, p.11, 2010.

. Pierce, Quasi-phase-matched optical parametric oscillators in bulk periodically poled LiNbO3, J. Opt. Soc. Am. B, vol.12, issue.11, p.21022116, 1995.

H. W. Hodgson, Optical Resonators Fundamentals, advanced concepts and Applications, 1997.

]. R. Nou10, H. Nouroozi, A. Suche, R. Hellwig, V. Ricken et al., Phase control of double-pass cascaded SHG/DFG wavelength conversion in Ti:PPLN channel waveguides, Opt. Express, vol.18, issue.13, p.1422514231, 2010.

]. R. Pag97, K. I. Page, L. D. Schaers, G. D. Deloach, F. D. Wilke et al., Cr 2+ -doped zinc chalcogenides as ecient, widelytunable mid-infrared lasers, IEEE J. Quantum Electron, vol.33, issue.4, p.609619, 1997.

]. S. Bibliographie-[-pea99, H. Pearl, Y. Lotem, S. Shimony, and . Rosenwaks, Optimization of laser intracavity second-harmonic generation by a linear dispersion element, J. Opt. Soc. Am. B, vol.16, issue.10, p.17051711, 1999.

]. B. Pei94, M. K. Peiz, M. H. Schott, and . Niemz, Electro-optic mode locking of an erbium:YAG laser with a rf resonance transformer, Appl. Opt, vol.33, issue.3, p.364367, 1994.

]. A. Per09, D. Peremans, F. Lis, P. G. Cecchet, K. T. Schunemann et al., Noncritical singly resonant synchronously pumped OPO for generation of picosecond pulses in the mid-infrared near 6.4 µm, Opt. Lett, issue.20, pp.34-30533055, 2009.

I. Wang, J. R. Vurgaftman, and . Meyer, Mode Locked and Q-Switched Cr:ZnSe Laser Using a Semiconductor Saturable Absorbing Mirror (SESAM), in Advanced Solid- State Photonics, OSA Technical Digest Series, p.6, 2005.

]. K. Pue99, L. Puech, D. C. Lefort, and . Hanna, Broad tuning around degeneracy in a singly resonant synchronously pumped parametric oscillator by means of a diraction grating, J. Opt. Soc. Am. B, vol.16, issue.9, p.15331538, 1999.

C. Rablau, Photoluminescence and Optical Absorption Spectroscopy of Infrared Materials Cr 2+ :ZnSe and ZnGeP2, Thèse de doctorat, 1999.

]. M. Ray09, T. Raybaut, A. Schmid, A. K. Godard, M. Mohamed et al., High-energy single-longitudinal mode nearly diraction-limited optical parametric source with 3 MHz frequency stability for CO2 DIAL, Opt. Lett, issue.13, pp.34-20692071, 2009.

]. A. Rya08 and . Ryasnyanskiy, Fourier transformed picosecond synchronously pumped optical parametric oscillator without spectral ltering element, Journal of the European Optical Society, vol.3, p.8037, 2008.

]. B. Saa09, G. R. Saar, C. W. Holtom, C. Freudiger, W. Ackermann et al., Intracavity wavelength modulation of an optical parametric oscillator for coherent Raman microscopy, Opt. Express, vol.17, issue.15, p.1253212539, 2009.

]. J. Sai03, T. Saikawa, and . Taira, Second-Harmonic Nonlinear Mirror CW Mode Locking in Yb:YAG Microchip Lasers, Japanese Journal of Applied Physics, vol.42, issue.6B, pp.649-651, 2003.

S. Saltiel, I. Buchvarov, and K. Koynov, Control of laser light parameters by ? (2) : ? (2) nonlinear optical devices, in Advanced photonics with second-order nonlinear processes , édité par A, p.89112, 1999.

]. S. Sch06, D. Schieer, A. I. Brajkovic, W. A. Cornea, and . Schroeder, Low-threshold, dualpassive mode locking of a large mode area Nd:GdVO4 laser, Opt. Express, vol.14, issue.15, p.66946704, 2006.

]. J. Sch07, K. L. Schaar, M. M. Vodopyanov, and . Fejer, Intracavity terahertz-wave generation in a synchronously pumped optical parametric oscillator using quasi-phasematched GaAs, Opt. Lett, vol.32, issue.10, p.12841286, 2007.

]. M. Seg10, X. Segura, M. C. Mateos, J. J. Pujol, M. Carvajal et al., Diode-Pumped Passively Q-Switched Tm:KLuW Laser with a Cr2+:ZnSe Saturable Absorber, Advanced Solid-State Photonics, p.6, 2010.

]. A. Sen00, A. Sennaroglu, C. Konca, and . Pollock, Continuous-wave power performance of a 2.47-mu;m Cr2+:ZnSe laser: experiment and modeling, Quantum Electronics IEEE Journal, vol.36, issue.10, pp.1199-1205, 2000.

]. A. Sen07, U. Sennaroglu, A. Demirbas, M. Kurt, and . Somer, Direct Experimental Determination of the Optimum Chromium Concentration in Continuous-Wave Cr2 + :ZnSe Lasers, Selected Topics in Quantum Electronics, IEEE Journal, vol.13, issue.3, pp.823-830, 2007.

]. J. Ser00, J. Seres, and . Hebling, Nonstationary theory of synchronously pumped femtosecond optical parametric oscillators, J. Opt. Soc. Am. B, vol.17, issue.5, p.741750, 2000.

]. R. Sha96, D. E. Sharp, N. Spock, J. Pan, and . Elliot, 190-fs passively mode-locked thulium ber laser with a low threshold, Opt. Lett, vol.21, issue.12, p.881883, 1996.

]. A. Smi99, R. J. Smith, M. S. Gehr, and . Bowers, Numerical models of broad-bandwidth nanosecond optical parametric oscillators, J. Opt. Soc. Am. B, vol.16, issue.4, p.609619, 1999.

]. A. Smi00 and . Smith, How to select nonlinear crystals and model their performance using SNLO software, Proc. SPIE 3928 web, 2000.

]. A. Smi05 and . Smith, Bandwidth and group-velocity eects in nanosecond optical parametric ampliers and oscillators, J. Opt. Soc. Am. B, vol.22, issue.9, p.19531965, 2005.

]. M. Bibliographie-[-sol08, E. D. Solodyankin, A. S. Obraztsova, A. I. Lobach, A. V. Chernov et al., Mode-locked 1.93 µm thulium ber laser with a carbon nanotube absorber, Opt. Lett, issue.12, pp.33-13361338, 2008.

]. I. Sor01, E. Sorokina, A. D. Sorokin, M. Lieto, R. H. Tonelli et al., Active and passive mode-locking of Cr2+:ZnSe laser, Advanced Solid-State Lasers, p.p

]. E. Sor02a, I. T. Sorokin, and . Sorokina, Tunable diode-pumped continuous-wave Cr 2+ :ZnSe laser, Applied Physics Letters, vol.80, issue.18, p.32893291, 2002.

. Schaers, Broadly tunable compact continuous-wave Cr2+:ZnS laser, Opt. Lett, vol.27, issue.12, p.10401042, 2002.

]. I. Sor04 and . Sorokina, Cr2+-doped II-VI materials for lasers and nonlinear optics, Third International Symposium on Lasers and Nonlinear Optical Materials (ISLNOM-3), pp.395-412, 2004.

]. E. Sor05, S. Sorokin, I. Naumov, and . Sorokina, Ultrabroadband infrared solid-state lasers, Selected Topics in Quantum Electronics, IEEE Journal, vol.11, issue.3, pp.690-712, 2005.

]. I. Sor06, E. Sorokina, T. J. Sorokin, K. I. Carrig, and . Schaers, A SESAM Passively Mode-Locked Cr:ZnS Laser, in Advanced Solid-State Photonics, p.4, 2006.

]. I. Sor07, E. Sorokina, and . Sorokin, Chirped-Mirror Dispersion Controlled Femtosecond Cr:ZnSe Laser, in Advanced Solid-State Photonics, p.7, 2007.

]. E. Sor09, I. Sorokin, and . Sorokina, Ultrashort-pulsed Kerr-lens modelocked Cr:ZnSe laser, Lasers and Electro-Optics 2009 and the European Quantum Electronics Conference. CLEO Europe -EQEC 2009. European Conference on, pp.1-1, 2009.

]. K. Sta88a, J. Stankov, and . Jethwa, A new mode-locking technique using a nonlinear mirror, Optics Communications, vol.66, issue.1, pp.41-46, 1988.

]. K. Sta88b and . Stankov, A mirror with an intensity-dependent reection coecient, Applied Physics B: Lasers and Optics, vol.45, p.191195, 1988.

]. K. Sta89a and . Stankov, Methods of passive and active mode locking using intracavity optical frequency mixing, Opt. Lett, vol.14, issue.1, p.5153, 1989.

]. K. Sta89b and . Stankov, Mode locking by a frequency-doubling crystal: generation of transformlimited ultrashort light pulses, Opt. Lett, vol.14, issue.7, p.359361, 1989.

K. Stankov, Pulse shortening by a nonlinear mirror mode locker, Applied Optics, vol.28, issue.5, p.942945, 1989.
DOI : 10.1364/AO.28.000942

]. K. Bibliographie-[-sta91a, V. Stankov, K. Kubecek, and . Hamal, Mode locking of a Nd:YAlO3 laser at 1, p.8

]. K. Sta91b, V. Stankov, K. Kubecek, and . Hamal, Mode locking of a Nd:YAlO3 laser at the 1.34-µm transition by a second-harmonic nonlinear mirror, Opt. Lett, vol.16, issue.7, p.505507, 1991.

]. K. Sta91c, V. P. Stankov, M. G. Tzolov, and . Mirkov, Frequency-domain analysis of the mode-locking process in a laser with a second-harmonic nonlinear mirror, Opt. Lett, vol.16, issue.9, p.639641, 1991.

]. K. Sta91d, V. P. Stankov, M. G. Tzolov, and . Mirkov, Frequency-doubling mode locker: the inuence of group-velocity mismatch, Opt. Lett, vol.16, issue.14, p.11191121, 1991.

]. K. Sta92, V. P. Stankov, M. G. Tzolov, and . Mirkov, Nonreciprocal optical device based on second-harmonic generation, Appl. Opt, issue.24, pp.31-50035009, 1992.

]. K. Sta93, K. Stankov, and H. Hamal, Jelinkova et I. Prochazka, Mode-locking of the 1.66 µm transition of an Er: YAlO3 laser, Optics Communications, vol.95, pp.1-3, 1993.

G. I. Stegeman, D. J. Hagan, and L. Torner, ?(2) cascading phenomena and their applications to all-optical signal processing, mode-locking, pulse compression and solitons, Optical and Quantum Electronics, vol.30, issue.12, p.16911740, 1996.
DOI : 10.1007/BF00698538

]. D. Sto10, M. H. Stothard, and . Dunn, Relaxation oscillation suppression in continuouswave intracavity optical parametric oscillators, Opt. Express, vol.18, issue.2, p.13361348, 2010.

]. G. Tho10, A. Thomas, D. J. Bäuerle, M. J. Farrell, and . Damzen, Nonlinear mirror modelocking of a bounce geometry laser, Opt. Express, vol.18, issue.12, p.1266312668, 2010.

]. F. Tit03, D. Tittel, A. Richter, and . Fried, Mid-Infrared Laser Applications in Spectroscopy, in Solid-State Mid-Infrared Laser Sources, v. 89 de Topics in Applied Physics, édité par I, p.458529, 2003.

]. G. Toc98, M. Toci, R. Vannini, and . Salimbeni, Perturbative model for nonstationary secondorder cascaded eects, J. Opt. Soc. Am. B, vol.15, issue.1, p.103117, 1998.

]. V. Tzo91, M. Tzolov, K. Mirkov, and . Stankov, Analysis of a frequency-doubling nonlinear mirror with enhanced nonlinearity, Optics Communications, vol.84, issue.12, pp.95-98, 1991.

]. A. Vel10, A. Velten, V. Zavadilova, J. Kubecek, and . Diels, Instabilities in intracavity pumped optical parametric oscillators and methods of stabilization, Applied Physics B: Lasers and Optics, vol.98, p.1325, 2010.

]. G. Bibliographie-[-ver00, A. I. Verozubova, V. V. Gribenyukov, O. Korotkova, D. Semchinova et al., Synthesis and growth of ZnGeP2 crystals for nonlinear optical applications, Journal of Crystal Growth, vol.213, pp.3-4, 2000.

]. K. Vod91, A. V. Vodopyanov, C. C. Lukashev, I. T. Phillips, and . Ferguson, Passive mode locking and Q switching of an erbium 3 µm laser using thin InAs epilayers grown by molecular beam epitaxy, Applied Physics Letters, vol.59, issue.14, p.16581660, 1991.

]. K. Vod03, P. G. Vodopyanov, and . Schunemann, Broadly tunable noncritically phasematched ZnGeP2 optical parametric oscillator with a 2-µJ pump threshold

H. Wasilewski, F. Liu, and . Capasso, Mode-locked pulses from mid-infrared Quantum Cascade Lasers, Opt. Express, vol.17, issue.15, p.1292912943, 2009.

]. Q. Wan09b, J. Wang, T. Geng, S. Luo, and . Jiang, Mode-locked 2 µm laser with highly thuliumdoped silicate ber, Opt. Lett, vol.34, issue.23, p.36163618, 2009.

L. Gawith, P. G. Ming, O. Smith, and . Balachninaite, Extended operation of synchronously pumped optical parametric oscillators to longer idler wavelengths

]. M. Wat03, M. V. Watson, D. P. O-'connor, D. C. Shepherd, and . Hanna, Synchronously pumped CdSe optical parametric oscillator in the 910 µm region, Opt. Lett, vol.28, issue.20, p.1957, 2003.

]. A. Wit06, M. Wittmann, J. Giovannini, L. Faist, S. Hvozdara et al., Room temperature, continuous wave operation of distributed feedback quantum cascade lasers with widely spaced operation frequencies, Applied Physics Letters, vol.89, issue.14, p.141116, 2006.

]. R. Wya81, D. Wyatt, and . Cotter, A tunable picosecond IR laser generating multi-megawatt pulses in the range 3-8 µm, Optics Communications, vol.37, issue.6, pp.421-425, 1981.

]. K. Bibliographie-[-zaw06, S. D. Zawilski, P. G. Setzler, T. M. Schunemann, and . Pollak, Increasing the laserinduced damage threshold of single-crystal ZnGeP2, J. Opt. Soc. Am. B, vol.23, issue.11, p.23102316, 2006.

]. D. Zel01, E. A. Zelmon, P. G. Hanning, and . Schunemann, Refractive-index measurements and Sellmeier coecients for zinc germanium phosphide from 2 to 9 µm with implications for phase matching in optical frequency-conversion devices

]. X. Zha92, D. Zhao, and . Mcgraw, Parametric mode locking, Quantum Electronics IEEE Journal, vol.28, issue.4, pp.930-939, 1992.

G. [. Zavelani-rossi, V. Cerullo, and . Magni, Mode locking by cascading of second-order nonlinearities, IEEE Journal of Quantum Electronics, vol.34, issue.1, pp.61-70, 1998.
DOI : 10.1109/3.655008