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Cavity dumping for free electron lasersCUTOLO, A; BENSON, S. V; SCHULTZ, J. F et al.Applied optics. 1989, Vol 28, Num 15, pp 3177-3182, issn 0003-6935Article

Improvement of a commercial laser cavity dumper systemPASCAL, D; LAVAL, S.Journal of physics. E. Scientific instruments. 1984, Vol 17, Num 10, pp 834-835, issn 0022-3735Article

Generation of 72-fs pulse from a cavity dumped, synchronously pumped dye laser with a single jetKUROKAWA, K; KUBOTA, H; NAKAZAWA, M et al.Optics communications. 1989, Vol 73, Num 4, pp 319-321, issn 0030-4018Article

30 ps cavity-dumped pulses from an argon laserHARVEY, J. D; PROCTOR, M. J; STEED, C. A et al.Applied physics letters. 1988, Vol 52, Num 9, pp 688-690, issn 0003-6951Article

Pulse compression by Raman induced cavity dumping of a homogeneously pumped oscillator and amplifierDE ROUGEMONT, F; MICHAU, V; FREY, R et al.Optics communications. 1985, Vol 54, Num 5, pp 301-304, issn 0030-4018Article

A note on Laser cavity dumping using optical bistability by J. Gea-Banacloche, Weng W. Chow and M. O. Scully, Optics Comm. 46 (1983) 43GEA-BANACLOCHE, J; CHOW, W. W; SCULLY, M. O et al.Optics communications. 1984, Vol 49, Num 6, issn 0030-4018, 453Article

Experimental investigation on heat loss of semi-spherical cavity receiverYUTING TAN; LI ZHAO; JUNJIANG BAO et al.Energy conversion and management. 2014, Vol 87, pp 576-583, issn 0196-8904, 8 p.Article

Investigation of higher spanwise Helmholtz resonance modes in slender covered cavitiesDE JONG, A. T; BIJL, H.The Journal of the Acoustical Society of America. 2010, Vol 128, Num 4, pp 1668-1678, issn 0001-4966, 11 p., 1Article

A model for the klystron cavity gapVAUGHAN, J. R. M.I.E.E.E. transactions on electron devices. 1985, Vol 32, Num 11, pp 2482-2484, issn 0018-9383Article

55kW, 240 fs pulse generation from a cavity dumped, synchronously pumped dye laser and its application to pulse compressionNAKAZAWA, M; NAKASHIMA, T; KUBOTA, H et al.Applied physics letters. 1987, Vol 51, Num 10, pp 728-730, issn 0003-6951Article

Efficient operation of a cavity dumped Q-switched and mode-locked YAG laserMILLER, R. J. D; MIN, L; SHRAGOWITZ, M. A et al.Optics communications. 1987, Vol 62, Num 3, pp 185-189, issn 0030-4018Article

Cavity dumping of a mode-locked pulsed Nd:YAG laserGLOTZ, M; EICHLER, H.-J.Journal of physics. E. Scientific instruments. 1987, Vol 20, Num 12, pp 1493-1496, issn 0022-3735Article

Cavity dumping of neodymium-doped fibre lasers using an acoustooptic modulatorABDULHALIM, I; PANNELL, C. N; JEDRZEJEWSKI, K. P et al.Optical and quantum electronics. 1994, Vol 26, Num 11, pp 997-1001, issn 0306-8919Article

Cavity-dumping of an optically pumped FIR laserBURGHOORN, J; ROEST, W; BIJ, J et al.Measurement science & technology (Print). 1993, Vol 4, Num 12, pp 1410-1415, issn 0957-0233Article

Highly stable 60 fs pulses from a cavity dumped hybridly mode-locked dye laserCYBO-OTTONE, A; NISOLI, M; MAGNI, V et al.Optics communications. 1992, Vol 92, Num 4-6, pp 271-276, issn 0030-4018Article

Electro-optic gain control and cavity dumping of a Nd: glass laser with active-passive mode-lockingHEINZ, P; FICKENSCHER, M; LAUBEREAU, A et al.Optics communications. 1987, Vol 62, Num 5, pp 343-347, issn 0030-4018Article

Multi-kilowatt transform-limited piosecond pulses from a cavity-dumped synchronously-pumped dye laser using self-stabilisationCOTTER, D.Optics communications. 1991, Vol 83, Num 1-2, pp 76-80, issn 0030-4018Article

CO2 waveguide laser with programmable pulse profileLETALICK, D; RENHORN, I; MWIDEN, A et al.Optical engineering (Bellingham. Print). 1989, Vol 28, Num 2, pp 172-179, issn 0091-3286Article

Numerical study on localized defect modes in two-dimensional lattices: a high Q-resonant cavityMOUSSA, R; SALOMON, L; DE FORNEL, F et al.Physica. B, Condensed matter. 2003, Vol 338, Num 1-4, pp 97-102, issn 0921-4526, 6 p.Conference Paper

Computer simulation of passive mode-locking of dye lasers with consideration of coherent light-matter interactionPETROV, V; RUDOLPH, W; WILHELMI, B et al.Optical and quantum electronics. 1987, Vol 19, Num 6, pp 377-384, issn 0306-8919Article

A study of IE formulations in near-resonance decoupling approach (NRDA) for cavity scattering problemsCHUN YU; LU, Cai-Cheng; CHONG LUO et al.IEEE antennas and propagation society international symposiumNational radio science meeting. 2004, pp 4040-4043, isbn 0-7803-8302-8, 4Vol, 4 p.Conference Paper

Effect of acceleration on the morphology-dependent optical resonances of spherical resonatorsIOPPOLO, T; ÖTÜGEN, V; FOURGUETTE, D et al.Journal of the Optical Society of America. B, Optical physics (Print). 2011, Vol 28, Num 2, pp 225-227, issn 0740-3224, 3 p.Article

Single-input spherical microbubble resonatorWATKINS, Amy; WARD, Jonathan; YUQIANG WU et al.Optics letters. 2011, Vol 36, Num 11, pp 2113-2115, issn 0146-9592, 3 p.Article

Flow aeration, cavity processes and energy dissipation on flat and pooled stepped spillways for embankmentsGUENTHER, Philipp; FELDER, Stefan; CHANSON, Hubert et al.Environmental fluid mechanics (2001). 2013, Vol 13, Num 5, pp 503-525, issn 1567-7419, 23 p.Article

Valuable reconsideration in the constructal design of cavitiesHAJMOHAMMADI, M. R; POOZESH, S; CAMPO, A et al.Energy conversion and management. 2013, Vol 66, pp 33-40, issn 0196-8904, 8 p.Article

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