Page 257 - Handbook of Lasers
P. 257

22.  Allik, T., Chandra, S., Robinson, T. R., Hutchinson, J. A., Sathyamoorthi, G., and Boyer, J. H.,
                             Laser  performance  and  material  properties  of  a  high  temperature  plastic  doped  with
                             pyrromethene-BF 2  dyes, Mat. Res. Soc. Proc. Vol. 329,  New Materials for Solid  State
                             Lasers (1994), p. 291.
                         23.  Dunn, B., Mackenzie, J. D., Zink, J. I., and Stafsudd, O. M., Solid-state tunable lasers based
                             on dye-doped sol-gel materials, SPIE Vol. 1328, Sol-Gel Optics (1990), p. 174.
                         24.  Kessler, W. J. and Davis, S. J., Novel solid state dye laser host, Proceedings of the Solid
                             State Dye Laser Workshop (1994), p. 216.
                         25.  Reisfeld, R., Brusilovsky, D., Eyal, M., Miron, E., Burstein, Z., and Ivri, J., A new solid-state
                             tunable laser in the visible, Chem. Phys. Lett. 160, 43 (1989).
                         26.  Canva, M., Dubois, A., Georges, P., Brum, A., Chaput, F., Ranger, A., and Boilot, J.-P.,
                             Perylene, pyrromethene and grafted rhodamine doped xerogels for tunable solid state laser,
                             SPIE Vol. 2288, Sol-Gel Optics III (1994), p. 298.
                         27.  Canva, M., Georges, P., Perelgritz, J.-F., Brum, A., Chaput, F., and Boilot, J.-P., Perylene- and
                             pyrromethene-doped xerogel for a pulsed laser, Appl. Optics 34, 428 (1995).
                         28.  Dul'nev, G. N., Zemskin, V. I., Krynetshi, B. B., Meshkovskii, I. K., Prokhorov, A. M., and
                             Stelmakl, O. M., Tunable solid-state laser with a microcomposition matrix active medium,
                             Sov. Tech. Phys. Lett. 4, 420 (1978).
                         29.  Altshuler, G. B., Dulneva, E. G., Meshkovskii, I. K., and Krylov, K. I., Solid state active
                             media based on dyes, (Zh. Prikl. Spektrosk.), J. Appl. Spectrosc. 36, 415 (1981).
                         30.  Altshuler, G. B., Dulneva, E. G., Krylov, K. I., Meshkovskii, I. K., and Urbanovich, V. S.,
                             Output characteristics of a laser utilizing rhodamine 6G in  microporous  glass.  Sov.  J.
                             Quantum Electron. 13, 784 (1983).
                         31.  Rahn, M. D. and King, T. A., Lasers based on dye doped sol-gel composite glasses, SPIE
                             Vol. 2288, Sol-Gel Optics III (1994), p. 382.
                         32.  Chandra, S. and Allik, T., Compact high-brightness solid state dye laser, Proceedings of the
                             Solid State Dye Laser Workshop (1994), p. 29.
                         33.  Soffer, B. H. and McFarland, B. B., Continuously tunable, narrow band organic dye lasers,
                             Appl. Phys. Lett. 10, 266 (1967).
                         34.  Kaminow, I. P., Weber, H. P., and Chandross, E. A., Poly(methyl methacrylate) dye laser
                             with internal diffraction grating resonator, Appl. Phys. Lett. 18, 497 (1971).
                         35.  McKiernan, J. M., Yamanaka, S. A., Dunn, B., and Zink, J. I., J. Phys. Chem. 94, 5652, (1990).
                         36.  Onstott, J. R., Short cavity dye laser excited by an electron beam, Appl. Phys. Lett. 31, 818
                             (1977).
                         37.  Whitehurst, C., Shaw, D. J., and King, T. A., Sol-gel glass solid state lasers doped with
                             organic molecules, SPIE Vol. 1328, Sol-Gel Optics (1990), p. 183.
                         38.  Kobayashi, Y., Kurokawa, Y., and Imai, Y., A transparent alumina film doped with laser dye
                             and its emission properties,  J. Non-Cryst. Solids 105, 198 (1988).
                         39.  Gromov, D. A., Dyumaev, K. M., Manenkov, A. A., Maslyukov, A. P., Matyushin, G. A.,
                             Nechitailo, V. S., and Prokhorov, A. M., Efficient plastic-host dye lasers, J. Opt. Soc. Am. B
                             2, 1028 (1985).
                         40.  Manenkov, A. A., Maslyukov, A. P., Matyushin, G. A., and Nechitailo, V. S., Modified
                             polymers -  effective host materials for solid state dye lasers and laser beam control elements:
                             a review, SPIE Vol. 2115, Visible and UV Lasers (1994), p. 136.
                         41.  Altman, J. C., Stone, R. E., Dunn, B., and Nishida, F., Solid state laser using a rhodamine-
                             doped silica gel compound, IEEE Phot. Techn. Lett. 3, 189 (1991).
                         42.  Ewanizky,  T.  F.  and  Pearce,  C.  K.,  Solid  state  dye  lasers  in  an  unstable  resonator
                             configuration, Proceedings of the Solid State Dye Laser Workshop (1994), p. 154.
                         43.  Fork, R. L., German, I. R., and Chandron, E. A., Photodimer distributed feedback laser,  Appl.
                             Phys. Lett. 20, 139 (1972).
                         44.  Hermes, R. E, Allik, T. H., Chandra, S., and Hutchison, J. A., High-efficiency pyrromethene
                             doped solid-state dye lasers, Appl. Phys. Lett. 63, 877 (1993).
                         45.  Mukherjee, A., Two-photon pumped upconverted lasing in dye doped polymer waveguides,
                             Appl. Phys. Lett. 62, 3423 (1993).








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