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1.3.9  References
                          1.  Naboikin, Yu. V., Ogurtsova, L. A., Podgornyi, A. P., and Maikes, L.  Ya.,  Stimulated
                             emission of light from doped molecular crystals at 4.2 K, Sov. J. Quantum Electron. 8, 457
                             (1978).
                          2.  Lam, K. S., Lo, D., and Wong, K. H., Observations of near-UV superradiance emission from
                             dye-doped sol-gel silica, Optics Comm. 121, 121 (1995).
                          3.  Muto, S., Ando, A., Yoda, O., Hanawa, T., and Ito, H., Dye laser by sheet of plastic fibers
                             with wide tuning range, Trans. IECE (Jpn) E 70, 317 (1987).
                          4.  Budakovskii, S. V., Gruzinskii, V. V., Davydov, S. V., Kulak, I. I., and Kolesnik, E. E.,
                             Stimulated emission from electron-beam-pumped diphenylbutadiene molecules imbedded in
                             a crystalline matrix, Sov. J. Quantum Electron. 22, 16 (1992).
                          5.  Muto, S., Ichikawa, A., Ando, A., Ito, C., and Inaba, H., Trial to plastic fiber dye laser, Trans.
                             IECE (Japan) E 69, 374 (1986).
                          6.  Bokhonov, A. F., Davydov, S. V., Kulam, I. I. et al., Spontaneous and stimulated-radiation of
                             impurity molecular crystals with optical and electron pumping, Zh. Prinkl. Spektrosk. 50,
                             966 (1989).
                          7.  Budakovskii, S. V., Gruzinskii, V. V., Davydov, S. V., and Kolesnik, E. E., Laser media on
                             impurity organic crystals with pumping into an absorption band of the matrix, Zh. Prinkl.
                             Spektrosk. 54, 79 (1991).
                          8.  Naboikin,  Yu.  V.,  Ogurtsova,  L.  A.,  Podgornyi,  A.  P.  et  al.,  Spectral  and  energy
                             characteristics of lasers based on organic molecules in polymers and toluol, Opt. Spektrosk.
                             28, 974 (1970); Sov. Opt. Spectrosc. 28, 528 (1970).
                          9.  Karl, N., Laser emission from organic molecular crystals, mode selection and tunability, J.
                             Lumin. 12-13, 851 (1976).
                         10.  Karl, N., Laser emission from an organic molecular crystal, Phys. Stat. Sol. A 13, 651 (1972).
                         11.  Tanuguchi, H., Fujiwara, T., Yamada, H., Tanosake, S., and Baba, M., Whispering-galley-
                             mode dye lasers in blue, green, and orange regions using dye-doped, solid, small spheres,
                             Appl. Phys. Lett. 62, 2155 (1993; see also, J. Appl. Phys. 73, 7957 (1993).
                         12.  McKiernan, J. M., Yamanaka, S. A., Knoble, E. T., Pouxviel, J. C., Parvench, D. E., Dunn, S.
                             B., and Zink, J. I., J. Inorg. and Organomet. Polymers 1, 87 (1991).
                         13.  Rifani, M., Yin, Y.-Y., Elliott, D. S. et al., Solid state dye lasers from stereospecific host-
                             guest interactions, J. Am. Chem. Soc. 117, 7572 (1995).
                         14.  Kohlmannsperger, J., Ein organischer laser: coronen in MCH/IP bei 100 K, Z. Naturf. 24a,
                             1547 (1969).
                         15.  Hänsch, T. W., Pernier, M., and Schawlow, A. L., Laser action of dyes in gelatin, IEEE J.
                             Quantum Electron. QE-7, 45 (1971).
                         16.  Muto, S., Shiba, T., Iijima, Y., Hattori, K., and Ito, C., Solid thin-film energy transfer dye
                             lasers, Trans. IECE (Japan) J69-C, 25 (1986); [Electron and Commun. Japan, part 2, 70,
                             21 (1987)].
                         17.  Lam, K.-S., Lo, D., and Wong, K.-H., Sol-gel silica laser tunable in the blue, Appl. Optics
                             34, 3380 (1995) and Wideband tuning of a XeCl laser-pumped dye-doped sol-gel silica
                             laser, IEEE Photon. Technol. Lett. 7, 306 (1995)
                         18.  Itoh, U., Takakusa, M., Moriya, T., and Saito, S., Optical gain of coumarin dye-doped thin
                             film lasers, Jpn. J. Appl. Phys. 16, 1059 (1977).
                         19.  Acuña, A. U., Amat-Guerri, F., Costela, A., Douhal, A., Figuera, J. M., Florido, F., and Sastre,
                             R., Proton-transfer lasing from solid organic matrices, Chem. Phys. Lett. 187, 98 (1991).
                         20.  Ferrer, M. L., Acuña, A. U., Amat-Guerri, F., Costela, A., Figuera, J. M., Florido, F. and Sastre,
                             R.,  Proton-transfer  lasers  from  solid  polymeric  chains  with  covalently  bound  2-(2'-
                             hydroxyphenyl)benzimidazole groups, Appl. Optics 33, 2266 (1994).
                         21.  Knobbe, E. T., Dunn, B., Fuqua, P. D., and Nishida, F., Laser behavior and photostability
                             characteristics of organic dye doped silicate gel materials, Appl. Optics 29, 2729 (1990).










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