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Results 1 to 25 of 110

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Q-switched chemical cw HF laserMAKSIMOV, Yu. P; MASHENDZHINOV, V. I; REVICH, V. E et al.Quantum electronics (Woodbury). 2005, Vol 35, Num 3, pp 233-236, issn 1063-7818, 4 p.Article

Analysis of cross-flow jet-type singlet oxygen generatorWATANABE, Goro; SUGIMOTO, Daichi; TEI, Kazuyoku et al.IEEE journal of quantum electronics. 2004, Vol 40, Num 8, pp 1030-1040, issn 0018-9197, 11 p.Article

Production of iodine atoms for an oxygen - iodine laser from iodine-containing molecules with the help of atomic oxygenSHEPELENKO, A. A; MIKHEEV, P. A.Quantum electronics (Woodbury). 2003, Vol 33, Num 3, pp 215-218, issn 1063-7818, 4 p.Article

On the possibility of obtaining high energy parameters from an IR-initiated thermal-chain explosion H2- F2 laserIGOSHIN, V. I; PICHUGIN, S. Yu; STUKALINA, I. L et al.Quantum electronics (Woodbury). 2001, Vol 31, Num 2, pp 135-138, issn 1063-7818Article

Ion - ion recombination in SF6 and in SF6-C2H6 mixtures for high values of E/NAPOLLONOV, V. V; BELEVTSEV, A. A; KAZANTSEV, S. Yu et al.Quantum electronics (Woodbury). 2001, Vol 31, Num 7, pp 629-633, issn 1063-7818Article

Self-initiated volume discharge in nonchain HF lasers based on SF6- hydrocarbon mixturesAPOLLONOV, V. V; BELEVTSEV, A. A; KAZANTSEV, S. Yu et al.Quantum electronics (Woodbury). 2000, Vol 30, Num 3, pp 207-214, issn 1063-7818Article

Optical quality of the active media of high-power cw chemical lasersALEKSANDROV, B. P; STEPANOV, A. A; TROSHCHENKOV, S. V et al.Quantum electronics (Woodbury). 1999, Vol 29, Num 6, pp 493-499, issn 1063-7818Article

Numerical modelling of a supersonic cw chemical HF laser with a three-jet nozzle arrayROTINYAN, M. A; STRELETS, M. K; FEDOROV, I. A et al.Quantum electronics (Woodbury). 1998, Vol 28, Num 5, pp 375-378, issn 1063-7818Article

Hydrogen fluoride vs deuterium fluoride space-based laser performance comparisonACEBAL, R.AIAA journal. 1998, Vol 36, Num 3, pp 416-419, issn 0001-1452Article

Parametric study of an efficient supersonic chemical oxygen-iodine laser/jet generator system operating without buffer gasFURMAN, D; BARMASHENKO, B. D; ROSENWAKS, S et al.IEEE journal of quantum electronics. 1998, Vol 34, Num 7, pp 1068-1074, issn 0018-9197Article

Characteristic features of the formation of a volume discharge in an HF(DF) laser with blade-shaped electrodesVELIKANOV, S. D; EVDOKIMOV, P. A; ZAPOL'SKII, A. F et al.Quantum electronics (Woodbury). 1998, Vol 28, Num 10, pp 901-902, issn 1063-7818Article

Gain saturation and the efficiency of energy conversion into radiation in a supersonic oxygen-iodine laser with a stable cavityZAGIDULLIN, M. V; NIKOLAEV, V. D.Quantum electronics (Woodbury). 1997, Vol 27, Num 5, pp 411-416, issn 1063-7818Article

Highly efficient supersonic chemical oxygen-iodine laser with a chlorine flow rate of 10 mmol s-1ZAGIDULLIN, M. V; NIKOLAEV, V. D; SVISTUN, M. I et al.Quantum electronics (Woodbury). 1997, Vol 27, Num 3, pp 195-199, issn 1063-7818Article

A small scale, supersonic chemical oxygen-iodine laserELIOR, A; LEBIUSH, E; SCHALL, W. O et al.Optics and laser technology. 1994, Vol 26, Num 2, pp 87-89, issn 0030-3992Article

A high-efficiency 200 W average power copper HyBrID laserJONES, D. R; MAITLAND, A; LITTLE, C. E et al.IEEE journal of quantum electronics. 1994, Vol 30, Num 10, pp 2385-2390, issn 0018-9197Article

Efficiency and mode discrimination of a linear array of square CO2 waveguide lasers phase-coupled by an intracavity spatial filterJANIG LE GALL; BOURDET, G. L.IEEE journal of quantum electronics. 1994, Vol 30, Num 6, pp 1455-1458, issn 0018-9197Article

The subsonic chemical oxygen-iodine laser : comparison of a theoretical model to experiments in the 30 W rangeCHURASSY, S; BOUVIER, A. J; BOUVIER, A et al.Journal de physique. III (Print). 1994, Vol 4, Num 10, pp 2013-2029, issn 1155-4320Article

Collisional relaxation of highly excited vibrational levels of I2(X)NOWLIN, M. L; HEAVEN, M. C.Journal de physique. IV. 1994, Vol 4, Num 4, pp C4.729-C4.737, issn 1155-4339Conference Paper

Experimental and theoretical study of a high-power c.w. chemical oxygen iodine laser(COIL)LOUVET, Y; PIGACHE, D; BOUVIER, A. J et al.Journal de physique. IV. 1994, Vol 4, Num 4, pp C4.743-C4.746, issn 1155-4339Conference Paper

Maximizing output power of a low-gain laser systemCARROLL, D. L; SENTMAN, L. H.Applied optics. 1993, Vol 32, Num 21, pp 3930-3941, issn 0003-6935Article

Two- and three-photon absorption based optical limiting and stabilization using a liquid dyeHE, Guang S; QINGDONG ZHENG; CHANGGUI LU et al.IEEE journal of quantum electronics. 2005, Vol 41, Num 7, pp 1037-1043, issn 0018-9197, 7 p.Article

High-power lasers and applications III (Beijing, 8-11 November 2004)Fan, Dianyuan; Ueda, Ken-ichi; Lee, Jongmin et al.SPIE proceedings series. 2005, isbn 0-8194-5582-2, XIII, 568 p, isbn 0-8194-5582-2Conference Proceedings

Gas flow, chemical lasers, and high-power lasers (Prague, 30 August - 3 September 2004)Kodymova, Jarmila.SPIE proceedings series. 2005, isbn 0-8194-5760-4, 2Vol, XXXIV, 1050 p, isbn 0-8194-5760-4Conference Proceedings

Efficient oscillation regimes of an HF laser pumped by a nonchain chemical reaction initiated by a self-sustained dischargePANCHENKO, A. N; ORLOVSKII, V. M; TARASENKO, V. F et al.Quantum electronics (Woodbury). 2003, Vol 33, Num 5, pp 401-407, issn 1063-7818, 7 p.Article

Self-initiated volume discharge pumps chemical lasersAPOLLONOV, Victor V.Laser focus world. 2003, Vol 39, Num 12, pp 84-86, issn 1043-8092, 3 p.Article

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