Academic literature on the topic 'Lasers à pompage diode'
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Journal articles on the topic "Lasers à pompage diode"
Alfianda, Alfianda, Muhammad Amin, and Risnawati Risnawati. "Perancangan Pengisian Pada Dispenser Dengan Memanfaatkan Sensor Dan Embedded System." J-Com (Journal of Computer) 1, no. 2 (July 31, 2021): 147–52. http://dx.doi.org/10.33330/j-com.v2i1.1246.
Full textBaumann, Melissa G. D., John C. Wright, Arthur B. Ellis, Thomas Kuech, and George C. Lisensky. "Diode lasers." Journal of Chemical Education 69, no. 2 (February 1992): 89. http://dx.doi.org/10.1021/ed069p89.
Full textGuillemot, Lauren, Pavel Loiko, Alain Braud, Thomas Godin, Ammar Hideur, and Patrice Camy. "Les lasers thulium à 2300 NM : Avancées et perspectives." Photoniques, no. 109 (July 2021): 35–39. http://dx.doi.org/10.1051/photon/202110935.
Full textMANNI, JEFF. "Surgical Diode Lasers." Journal of Clinical Laser Medicine & Surgery 10, no. 5 (October 1992): 377–80. http://dx.doi.org/10.1089/clm.1992.10.377.
Full textVasil’ev, Peter. "Ultrafast Diode Lasers." Optical Engineering 35, no. 8 (August 1, 1996): 2439. http://dx.doi.org/10.1117/1.600817.
Full textJohnson, Noble M., Arto V. Nurmikko, and Steven P. DenBaars. "Blue Diode Lasers." Physics Today 53, no. 10 (October 2000): 31–36. http://dx.doi.org/10.1063/1.1325190.
Full textAubert, J. J., Ch Wyon, A. Cassimi, V. Hardy, and J. Hamel. "UN laser solide accordable pompe par diode." Optics Communications 69, no. 3-4 (January 1989): 299–302. http://dx.doi.org/10.1016/0030-4018(89)90120-x.
Full textVoropai, E. S., K. F. Ermalitskaia, F. A. Ermalitski, A. E. Rad’ko, N. V. Rzheutsky, and M. P. Samtsov. "COMPACT PICOSECOND DIODE LASERS." Instruments and Experimental Techniques 65, no. 1 (February 2022): 83–88. http://dx.doi.org/10.1134/s0020441222010213.
Full textLozes-Dupuy, F., S. Bonnefont, and H. Martinot. "Surface emitting diode lasers." Journal de Physique III 4, no. 12 (December 1994): 2379–89. http://dx.doi.org/10.1051/jp3:1994284.
Full textHohimer, J. P., G. A. Vawter, D. C. Craft, and G. R. Hadley. "Interferometric ring diode lasers." Applied Physics Letters 61, no. 12 (September 21, 1992): 1375–77. http://dx.doi.org/10.1063/1.107542.
Full textDissertations / Theses on the topic "Lasers à pompage diode"
KONATE, ADAMA. "Pompage par diode laser de lasers a centres colores emettant au voisinage de 1,5m." Caen, 1995. http://www.theses.fr/1995CAEN2042.
Full textChenais, Sébastien. "Nouveaux matériaux laser dopés à l'ytterbium : performances en pompage par diode et étude des effets thermiques." Phd thesis, Université Paris Sud - Paris XI, 2002. http://tel.archives-ouvertes.fr/tel-00119661.
Full textDousseau, Philippe. "Etude du pompage longitudinal par diode laser du yag dope holmium et thulium." Toulouse 3, 1992. http://www.theses.fr/1992TOU30046.
Full textCassimi, Amine. "Pompage optique de l'helium par un laser accordable pompe par diode laser : perspectives en magnetometrie." Caen, 1989. http://www.theses.fr/1989CAEN2028.
Full textLucas-Leclin, Gaëlle. "importance des propriétés spectrales des lasers pour les horloges atomiques à pompage optique." Phd thesis, Université Paris Sud - Paris XI, 1998. http://tel.archives-ouvertes.fr/tel-00006254.
Full textBarbet, Adrien. "Pompage par LED de matériaux laser émettant dans le visible ou l'infrarouge proche." Thesis, Université Paris-Saclay (ComUE), 2016. http://www.theses.fr/2016SACLO020/document.
Full textSince the early 2000s, the lighting market is constantly growing up, pulling the Light-Emitting Diodes (LED) performance forward and pushing their cost down. LED is becoming an interesting source of light for laser pumping, between flashlamp and laser diodes. Thus, 40 years after the first demonstration, we suggest to revisit laser LED pumping. In this work, we demonstrated for the first time a Nd:YVO4 laser directly LED-pumped. LED radiance being limited, we took interest in LED-pumped luminescent concentrators. By developing Ce:YAG concentrator, we were able to overcome the LEDs irradiance by a factor of 20, leading to output irradiances similar to the laser diode ones (of the order of multi-kW/cm²). We validated the concept by pumping for the first time a Nd:YVO4 crystal and a Nd:YAG crystal with luminescent concentrators. Output energies of several mJ were obtained. In addition, we succeeded to get a passively Q-switched regime for the Nd:YAG laser by using saturable absorbers leading to unpreceded performance for a LED-pumped laser. Finally, LED-pumped concentrators pave the way for new possibilities for high-radiance source pumped media. Our first tests on titanium doped sapphire show that a laser gain with a LED pumping is achievable
Aubourg, Adrien. "Sources laser à fibre cristalline YAG dopée erbium et pompée par diode." Thesis, Palaiseau, Institut d'optique théorique et appliquée, 2014. http://www.theses.fr/2014IOTA0008/document.
Full textAmong the several applications of laser sources, some requires kilometers range propagation in the atmosphere : telemetry, guidance system or active imagery. High pulse energy improves the range of the system, but may cause permanent blindness to an observer's eyes. Hence, these applications must use laser beam which wavelength are located in the eye-safe region, ideally at the local minimum of the atmosphere absorption (1550-1650 nm). Such laser sources are already commercially available, but are not suited for the demanding military needs : compacity, electrical consumption, performance and large operating temperature range (-40°C/+60°C).My work aims to develop a laser source filling these specifications. Thanks to the collaboration with the industrial partners Fibercryst and Cilas, it focuses on the design of a compact, efficient, directly diode-pumped Er3+:YAG single cristal fiber laser for military applications.With a homemade numerical simulation of a passively Q-switched Er3+:YAG laser source, many laser emitters are experimentally designed and compared. Further studies around saturable absorbers allowed sensible improvements of the output pulse energy.This work, whose results may already be commercially interesting, may lead to new technics and architectures of erbium doped solid-state laser for better prototypes
Boucher, Matthieu. "Développement de sources laser solides à barreau de Nd:YAP pompées par lampes flashes et par diodes lasers." Dijon, 2003. http://www.theses.fr/2003DIJOS045.
Full textThibault, Florent. "Nouvelles structures pour lasers à impulsions brèves de forte puissance : conception et réalisation d'amplificateurs/lasers guides d'onde élaborés par épitaxie en phase liquide et démonstration de lasers femtoseconde en Y2SiO5 : Yb et Lu2SiO5 : Yb." Paris 11, 2006. http://www.theses.fr/2006PA112272.
Full textYb-doped yttrium and lutetium orthosilicates, Y2SiO5:Yb and Lu2SiO5:Yb respectively, exhibit spectroscopic properties favorable to an efficient laser operation in both high power cw and femtosecond regime. Their first diode-pumped femtosecond operation demonstration lead to exceptional performances in terms of output power and efficiency. In order to realize compact and efficient solid-state laser devices using those materials, we chose a configuration with an Yb-doped medium planar waveguide geometry, grown by liquid phase epitaxy, face-pumped by a single laser diode bar. The growth of highly doped Y2SiO5:Yb layers, within a large range of compositions and thicknesses, was demonstrated. The refractive index increase due to the substitution of the various dopants is analyzed. The layers spectroscopic properties are similar to the bulk ones, with an noticeably higher crystalline quality. The Yb ion lifetime evolution with respect to its doping shows up a particularly low decrease, proof of a low concentration of extrinsic quenching centers. The covered YSO:24%Yb waveguides exhibit lower than 0. 3dB/cm propagation losses, and provided up to 2. 9dB/cm net amplification at 1082nm with a single mode output. The realization of the first diode-pumped monolithic cw waveguide lasers was also demonstrated. For a 4% output coupler, they provided up to 340mW at 1082nm with a 14% slope efficiency
Faure, Herlet Nathalie. "Nouveaux matériaux laser dopés néodyme adaptés au pompage par diodes." Université Joseph Fourier (Grenoble), 1995. http://www.theses.fr/1995GRE10148.
Full textBooks on the topic "Lasers à pompage diode"
Institute of Physics (Great Britain), ed. Diode lasers. Bristol: Institute of Physics Pub., 2005.
Find full textDiehl, Roland, ed. High-Power Diode Lasers. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/3-540-47852-3.
Full textBachmann, Friedrich, Peter Loosen, and Reinhart Poprawe, eds. High Power Diode Lasers. New York, NY: Springer New York, 2007. http://dx.doi.org/10.1007/978-0-387-34729-5.
Full textDan, Botez, and Scifres Don R, eds. Diode laser arrays. Cambridge: Cambridge University Press, 1994.
Find full textTunable external cavity diode lasers. Singapore: World Scientific, 2005.
Find full textYe, Cunyun. Tunable external cavity diode lasers. Hackensack, N.J: World Scientific, 2004.
Find full textMonolithic diode-laser arrays. Berlin: Springer-Verlag, 1994.
Find full textPetermann, K. Laser diode modulation and noise. Dordrecht: Kluwer Academic Publishers, 1988.
Find full text1950-, Coleman James J., ed. Selected papers on semiconductor diode lasers. Bellingham, Wash., USA: SPIE Optical Engineering Press, 1992.
Find full textCorzine, S. W. (Scott W.) and Mashanovitch Milan 1974-, eds. Diode lasers and photonic integrated circuits. 2nd ed. Hoboken, N.J: Wiley, 2012.
Find full textBook chapters on the topic "Lasers à pompage diode"
Yadav, Rahul. "Diode Lasers." In Encyclopedia of Ophthalmology, 1–3. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-642-35951-4_611-1.
Full textYadav, Rahul. "Diode Lasers." In Encyclopedia of Ophthalmology, 638–40. Berlin, Heidelberg: Springer Berlin Heidelberg, 2018. http://dx.doi.org/10.1007/978-3-540-69000-9_611.
Full textWu, M. C., Y. K. Chen, T. Tanbun-Ek, and R. A. Logan. "Monolithic CPM Diode Lasers." In Ultrafast Phenomena VIII, 211–16. Berlin, Heidelberg: Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-642-84910-7_62.
Full textFox, R., G. Turk, N. Mackie, T. Zibrova, S. Waltman, M. P. Sassi, J. Marquardt, A. S. Zibrov, C. Weimer, and L. Hollberg. "Diode Lasers and Metrology." In NATO ASI Series, 279–86. Boston, MA: Springer US, 1993. http://dx.doi.org/10.1007/978-1-4615-2998-9_19.
Full textHanke, Christian. "High Power Diode Lasers." In NATO ASI Series, 139–55. Boston, MA: Springer US, 1993. http://dx.doi.org/10.1007/978-1-4615-2998-9_9.
Full textNouri, Keyvan, J. A. Savas, J. Ledon, K. Franca, A. Chacon, and K. Nouri. "Alexandrite and Diode Lasers." In Laser Treatment of Vascular Lesions, 77–93. Basel: S. KARGER AG, 2014. http://dx.doi.org/10.1159/000355051.
Full textMooradian, Aram, Andrei Shchegrov, Ashish Tandon, and Gideon Yoffe. "External-Cavity Surface-Emitting Diode Lasers." In Semiconductor Disk Lasers, 263–304. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, 2010. http://dx.doi.org/10.1002/9783527630394.ch7.
Full textCalderhead, R. Glen, and Tokuya Omi. "Light-Emitting Diode Phototherapy." In Handbook of Lasers in Dermatology, 307–27. London: Springer London, 2014. http://dx.doi.org/10.1007/978-1-4471-5322-1_20.
Full textWatts, R. N., and C. E. Wieman. "Stopping Atoms with Diode Lasers." In Springer Series in Optical Sciences, 20–21. Berlin, Heidelberg: Springer Berlin Heidelberg, 1985. http://dx.doi.org/10.1007/978-3-540-39664-2_6.
Full textZhukov, A. E. "11.1 Quantum dot diode lasers." In Laser Systems, 95–131. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-14177-5_8.
Full textConference papers on the topic "Lasers à pompage diode"
Mooradian, Aram. "Diode Lasers for Displays." In 2006 IEEE LEOS Annual Meeting. IEEE, 2006. http://dx.doi.org/10.1109/leos.2006.279099.
Full textBENDER, G. M. "Diode-pumped Nd:YAG lasers." In Conference on Lasers and Electro-Optics. Washington, D.C.: OSA, 1985. http://dx.doi.org/10.1364/cleo.1985.tul1.
Full textYilmaz, T., C. DePriest, P. Defyett, A. Braun, and J. Abeles. "Ultrastable modelocked diode lasers." In Ultrafast Electronics and Optoelectronics. Washington, D.C.: OSA, 2003. http://dx.doi.org/10.1364/ueo.2003.tha1.
Full textLagatsky, A. A., A. R. Sarmani, C. G. Leburn, E. U. Rafailov, M. A. Cataluna, M. B. Agate, C. T. A. Brown, and Wilson Sibbett. "Diode-based Ultrafast Lasers." In Advanced Solid-State Photonics. Washington, D.C.: OSA, 2005. http://dx.doi.org/10.1364/assp.2005.640.
Full textOsinski, Marek. "Coupled-cavity diode lasers." In OE/LASE'93: Optics, Electro-Optics, & Laser Applications in Science& Engineering, edited by Anup Bhowmik. SPIE, 1993. http://dx.doi.org/10.1117/12.150614.
Full textAlbers, Peter. "Diode-pumped neodymium lasers." In The Hague '90, 12-16 April, edited by Clive L. M. Ireland. SPIE, 1990. http://dx.doi.org/10.1117/12.20582.
Full textvan Eck, Dick C. "Optics For Diode Lasers." In 1988 International Congress on Optical Science and Engineering, edited by Gerard A. Acket. SPIE, 1989. http://dx.doi.org/10.1117/12.950190.
Full textTurnbull, G. A., A. E. Vasdekis, G. Tsiminis, and I. D. W. Samuel. "Diode-pumped polymer lasers." In Photonic Devices + Applications, edited by Zakya H. Kafafi and Franky So. SPIE, 2007. http://dx.doi.org/10.1117/12.735987.
Full textVellchansky, V. L. "Frequency stabilized diode lasers." In Joint Soviet − American workshop on the physics of semiconductor lasers. AIP, 1991. http://dx.doi.org/10.1063/1.41373.
Full textZhdanov, B. V., and R. J. Knize. "Diode pumped alkali lasers." In SPIE Security + Defence, edited by David H. Titterton and Mark A. Richardson. SPIE, 2011. http://dx.doi.org/10.1117/12.897533.
Full textReports on the topic "Lasers à pompage diode"
Kwong, Norman. Pigtailed Single-Mode Diode Lasers. Fort Belvoir, VA: Defense Technical Information Center, April 1989. http://dx.doi.org/10.21236/ada209913.
Full textNAVAL OCEAN SYSTEMS CENTER SAN DIEGO CA. Laser Diode Pumped Solid State Lasers. Fort Belvoir, VA: Defense Technical Information Center, January 1987. http://dx.doi.org/10.21236/ada251815.
Full textKorevaar, Eric. Transverse Diode Pumping of Solid-State Lasers. Fort Belvoir, VA: Defense Technical Information Center, May 1992. http://dx.doi.org/10.21236/ada252213.
Full textPeyghambarian, Nasser, and Axel Schulzgen. AASERT-97 Development of New Diode Lasers. Fort Belvoir, VA: Defense Technical Information Center, January 2001. http://dx.doi.org/10.21236/ada386891.
Full textBirnbaum, Milton. U3+ Solid-State Lasers [Diode-Pumped Solid-State Lasers (2-3 Microns)]. Fort Belvoir, VA: Defense Technical Information Center, May 1992. http://dx.doi.org/10.21236/ada251989.
Full textMullen, R. A., D. J. Vickers, G. C. Valley, D. M. Pepper, and R. C. Lind. High Brightness Diode Lasers for Blue-Green Applications. Fort Belvoir, VA: Defense Technical Information Center, March 1990. http://dx.doi.org/10.21236/ada360081.
Full textColdren, L. A. Thermal Strain Induced Temperature Compensation of Diode Lasers. Fort Belvoir, VA: Defense Technical Information Center, December 2000. http://dx.doi.org/10.21236/ada387731.
Full textHsieh, J. J. 1.5 Micrometer GaInAsP High Pulsed Power Diode Lasers. Fort Belvoir, VA: Defense Technical Information Center, March 1985. http://dx.doi.org/10.21236/ada153568.
Full textJacques, S., A. Welch, M. Motamedi, S. Rastegar, F. Tittel, and L. Esterowitz. Diagnostic and therapeutic applications of diode lasers and solid state lasers in medicine. Office of Scientific and Technical Information (OSTI), May 1992. http://dx.doi.org/10.2172/7028753.
Full textHanson, R. K. Next Generation Diode Lasers for Wavelength Multiplexed Propulsion Sensors. Fort Belvoir, VA: Defense Technical Information Center, September 2002. http://dx.doi.org/10.21236/ada408659.
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