Kakehata, M. et al., “CTUH15 Experimental Study of Tunability of a Discharge Pumped Molecular Fluorine Laser,” CLEO 90/Tuesday Poster, pp. 106-108. |
Optics and Laser Technology, vol. 11, No. 6, Dec. 1979, “CIF and F2: two new ultra-violet laser systems,” K. Hohla, M. Diegelmann, H. Pummer, K.L. Kompa, 6 pp. |
Applied Physics B Photo-physics and Laser Chemistry, vol. B55, No. 1, Jul. 1992, “Influence of Cavity Configuration on the Pulse Energy of a High-Pressure Molecular Fluorine Laser,” S.M. Hooker, A.M. Haxell, and C.E. Webb, 6 pgs. |
Highlights Lambdaphysik, Apr, 1993, “Excimer laser based microstructuring using mask projection techniques,” U. Sarbach and H.J. Kahlert, 4 pgs. |
“High-power efficient vacuum ultraviolet F2 laser excited by an electric discharge,” V.N. Ishchenko, S.A. Kochubei, and A.M. Razhev, 3 pgs. |
Conference on Lasers and Electro-optics, 1990 Technical Digest Series, vol. 7, May 21-25, 1990, Anaheim, California, “Spectroscopic comparison between low and high pressure discharge pumped Xe atomic lasers,” K. Komatsu, E. Matsui, S. Takahashi, Fumiko Kannari, M. Obara, 30 pgs. |
Applied Physics Letters, vol. 56, Jun. 25, 1990, No. 26, “High specific output energy operation of a vacuum ultraviolet molecular fluorine laser excited at 66 MW/cm3 by an electric discharge,” Masayuki Kakehata, Etsu Hashimoto, Fumihiko Kannari and Minoru Obara, 6 pgs. |
Journal of Applied Physics, vol. 50, Jun. 1979, No. 6, “Novel neutral atomic fluorine laser lines in a high-pressure mixture of F2 and He,” Shin Sumida, Minoru Obara, and Tomoo Fujioka, 10 pgs. |
IEEE Journal of Quantum Electronics, Nov. 1991, vol. 27, No. 11, “Efficiency Characterization of Vacuum Ultraviolet Molecular Fluorine (F2) Laser (157 nm) Excited by an Intense Electric Discharge,” Masayuki Kakehata, Tatsuya Uematsu, Fumihiko Kannari, and Minoru Obara, 10 pgs. |
Journal of Modern Optics, vol. 37, No. 4, Apr. 1990, “Amplification characteristics of a discharge excited F2 laser,” C. Skordoulis, E. Sarantopoulou, S. Spyrou and A.C. Cefalas, 12 pgs. |
Optics Communications, vol. 55, No. 6, Oct. 15, 1985, “Gain Measurements at 157 nm in an F2 Pulsed Discharge Molecular Laser,” A.C. Cefalas, C. Skordoulis, M. Kompitasas and C.A. Nicolaides, 6 pgs. |
Applied Physics Letters, vol. 54, Feb. 13, 1989, No. 7, “High-power discharge-pumped F2 molecular laser,” Kawakatsu Yamada, Kenzo Miyazaki, Toshifumi Hasama, and Takuzo Sata, 6 pgs. |
Leos '89, Lasers and Electro-Optics Society Annual Meeting Conference Proceedings, Oct. 17-20, 1989, Orlando, Florida, “High Power Discharge-Pumped F2 Laser, ” K. Yamada, K. Miyazaki, T. Hasama, T. Sato, M. Kasamatsu, and Y. Mitsuhashi, 13 pgs. |
Journal of Applied Physics, vol. 53, May 1982, No. 5, “Gain and saturation of the atomic fluorine laser,” R. Sadighi-Bonabi, F.W. Lee, and C.B. Collins, 11 pgs. |
Conference on Lasers and Electro-Optics, 1989 Technical Digest Series, vol. 11, May 24-28, 1989, Baltimore, Maryland, “Intense VUV-XUV generation from rare gas excimers,” Wataru Sasaki, Kou Kurosawa, 23 pgs. |
Soviet Journal of Quantum Electronics, 16(5) May 1986, “High-power efficient vacuum ultraviolet F2 laser excited by an electric discharge,” V.N. Ishchenko, S.A. Kochubei, and A.M. Razhev, 9 pgs. |
Optics Communications, vol. 28, No. 1, Jan. 1979, “Discharge pumped F2 Laser at 1580 Å”, H. Pummer, K. Hohla, M. Diegelmann and J.P. Reilly, 6 pgs. |
Gas Flow and Chemical Lasers, SPIE Vo. 1397, Sep. 10-14, 1990, “Frequency up-conversion of a discharge pumped molecular fluorine laser by stimulated Raman scattering in H2,” Masayuki Kakehata, Etsu Hashimoto, Fumihiko Kannari, and Minoru Obara, 16 pgs. |
The Journal of Chemical Physics, vol. 69, Sep. 15, 1978, “An efficient, high power F2 near 157 nma) ,” Joseph R. Woodworth and James K. Rice, 11 pgs. |
Verhandlungen, Mar. 1990, Phsyikertagung Munchen, 1990, Optimierung der VUV-Emission bei 157 nm (F2-Linie) bei entladungs—gepemten Excimerlasern, F. Voss, 2 pgs. |
Tagungsband, Vom. 24, Bis. 26, Sep. 1991, Abstract: “Vakuum UV Molekullaser mit hoher Ausgangsleistung,” 3 pgs. |
Applied Physics Letters, vol. 51, No. 13, Sep. 28, 1997, “Theoretical evaluation of high-efficiency operation of discharge-pumped vacuum-ultraviolet F2 lasers,” Mieko Ohwa and Minoru Obara, 6 pgs. |
Applied Optics VUV VI, vol. 19, No. 23, Dec. 1, 1980, “Vacuum ultraviolet excimer lasers,” M.H.R. Hutchinson, 9 pgs. |
Review of Scientific Instruments, vol. 56, No. 5, Part 1, May 1985, “Simple, compact, high-repetition rate XeCI laser,” E. Armandillo, G. Grasso, and G. Salvetti, 7 pgs. |
Applied Physics Letters, vol. 31, No. 1, Jul. 1, 1977, “vuv emissions from mixtures of F2 and the noble gasses—A molecular F2 laser at 1575 Åa),” James K. Rice, A. Kay Hays, and Joseph R. Woodwsorth, 5 pgs. |
Applied Physics Letters, vol. 63, No. 4, Jul. 26, 1993, “Small-signal gain measurements in an electron beam pumped F2 laser,” H.M.J. Bastiaens, B.MN.C. van Dam, P.J.M. Peters, and W. J. Witteman, 7 pgs. |
ZOS, Akademie der Wissenschaften der DDR, Zentralinstitut fur Optik and Wissenschaften der DDR, Oktober 1987, “Leistungastarker atomarer Fluorlaser im roten Spektralbereich,” Jurgen Lademann, Roland Kunig, Wadim Saidow, Rainer Weidauer, 12 pgs. |
Discharge-Pumped Excimer Laser Research in Japan, Apr. 1988, “Theoretical simulation of a discharge pumped F2 excimer laser,” T. Uematsu et al. Keio U. |
Science Report, Lambdaphysik, No. 3, Nov. 1990, “Breakthrough in F2Laser Technology,” 4 pgs. |
Institut Fur Quantenoptik, Oct. 22, 1991, “Stimulated Raman scattering of a F2-Laser in H2,” C. Momma, A. Tunnermann, F. Voβ, C. Windolph and B. Wellegehausen, 8 pgs. |
Highlights, Lambdaphysik, No. 33, Feb. 1992, “VUV Stokes and Anti-Stokes Raman Lines Derived from and F2 Laser,” C. Momman, A Tunermann, F. Voβ, C. Windolph, and B. Wellegehausen, 5 pgs. |
Highlights, Lambdaphysik, No. 43, Jan. 1994, “Photochemical modification of Fluorocarbon Resin to Generate Adhesive Properties,” 6 pgs. |
“Processing of PTFE with High Power VUV Laser Radiation,” D. Basting, U. Sowada, F. Vo_, P. Oesterlin, 3 pgs. |
Journal of Applied Physics, vol. 81, No. 6, Mar. 1997, “Small-signal gain measurements in a discharge-pumped F2 laser,” Tahei Kitamura, Yoshihiko Arita and Keisuke Maeda, Masayuki Takasaki, Kenshi Nakamura, Yoshiano Fujiwara and Shiro Horiguchi, 12 pgs. |
Journal of Applied Physics, vol. 77, Jan. 1-15, 1995, “Long pulse electron beam pumped molecular F2Laser,” F.T.J.L. Lankhorst, H.M.J. Bastiaens, H. Botma, P.J.M. Peters, and W.J. Witteman, 8 pgs. |
Applied Physics, Vo. B33, No. 4, Apr. 1984, “Intense Laser Generation from an Atomic-Fluorine,” I.G. Koprinkov, K.V. Stamenov, and K.A. Stankov, 5 pgs. |
Journal of the Optical Society of America, vol. 64, No. 4, Apr. 1974, “Modes of a laser resonator containing tilted birefringent plates,” Arnold L. Bloom, 7 pgs. |
High Power Laser & Particle Beams, vol. 6, No. 4, Series No. 24, Nov. 15, 1994. |
SPIE—The International Society for Optical Engineering, Excimer Beam Applications, vol. 998, Sep. 6, 1988, Boston, Massachusetts, “Narrow-band KrF excimer laser—tunable and wavelength stabilized,” Koich Wani, Yoshiro Ogata, Yoshiaki Watarai, Takuhiro Ono, Takeo Miyata, Reiji Sano, and Yasuaki Terui, 10 pgs. |
Conference on Lasers and Electro-Optics, 1989 Technical Digest Series, vol. 11, Apr. 24-29, 1989, Baltimore, Maryland, “Line-narrowed industrial excimer laser for microlithography,” R.K. Brimacombe, T.J. McKee, E.D. Mortimer, B. Norris, J. Reid, T.A. Znotins, 24 pgs. |
Applied Optics, Aug. 1968, vol. 7, No. 8, “Theory of Multiplate Resonant Reflectors,” J.K. Watts, 3 pgs. |
Applied Physics, 1978, “Nitrogen-Laser-Pumped Single-Mode Dye Laser,” S. Saikan, 4 pgs. |
Optics Communications, vol. 14, No. 1, May 1975, “Electronic Tunig of Dye Lasers by an Electrooptic Birefringent Fabry-Perot Etalon,” Masakatsu Okada and Shogo Ieiri, 7 pgs. |