Page 260 - Handbook of Lasers
P. 260
92. Hide, F., Schwartz, B. J., Diaz-Garcia, M. A., and Heeger, A. J., Laser emission from solutions
and films containing semiconducting polymer and titanium dioxide nanocrystals, Chem.
Phys. Lett. 256, 424 (1996).
93. Allik, T. H., 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 dyes, Mat. Res. Soc. Symp. Proc. 329, 291 (1994).
2
94. Hermes, R.E., Lasing performance of pyrromethene-BF 2 laser dyes in a solid polymer host,
SPIE Proceedings Vol. 2115: Visible and UV Lasers (1994), p. 240.
95. Allik, T. H., Chandra, S., Hermes, R. E., Hutchinson, J. A., Soong, M. L., and Boyer, J. H.,
Efficient and robust solid-state dye laser, OSA Proc. on Adv. Solid-State Lasers 15, 271
(1993).
96. Bulovic´, V., Kozlov, V. G., Khalfin, V. B., and Forrest, S. R., Transform-limited, narrow-
linewidth lasing action in organic semiconductor microcavities, Science 279, 553 (1998).
97. Berggren, M., Dodabalapur, A., Slusher, R. E., Timko, A., and Nalamasu, O., Organic solid-
state lasers with imprinted gratings on plastic substrates, Appl. Phys. Lett. 72, 410 (1998).
98. He, G. S., Kim, K.-S., Yuan, L., Cheng, N., and Prasad, P. N., Two-photon pumped partially
cross-linked polymer laser, Appl. Phys. Lett. 71, 1619 (1997).
99. Kozlov, V. G., Parthasarathy, G., Burrows, P. E., Forrest, S. R., You, Y., and Thompson, M.
E., Optically pumped blue organic semiconductor lasers, Appl. Phys. Lett. 72, 144 (1998).
100. Wang, H. H. L. and Gampel, L., A simple, efficient plastic dye laser, Optics Commun. 18,
444 (1976).
101. Finlayson, A. J., Peters, N., Kolinsky, P. V., and Venner, M. R. W., Flashlamp pumped
polymer dye laser containing Rhodamine 6G, Appl. Phys. Lett. 72, 2153 (1997).
102. Kuwata-Gonokami, M., Takeda, K., Yasuda, H., and Ema, K., Laser emission from dye-doped
polystrene microsphere, Jpn. J. Appl. Phys. 31, L99 (1992).
103. Kuwata-Gonokami, M. and Takeda, K., Polymer whispering gallery mode lasers, Opt.
Mater. 9, 12 (1998).
104. Vietze, U., Krauss, O. Laeri, F. et al., Zeolite-dye microlasers, Phys. Rev. Lett. 81, 4628
(1998).
105. Ihlein, G., Schüth, F., Krauss, O., Vietze, U., and Laeri, F., Alignment of a laser dye in the
channels of athe AlPO -5 molecular sieve, Adv. Mater. 10, 1117 (1998).
4
106. Wu, S. and Zhu, C., All-solid-state UV dye laser pumped by XeCl laser, Opt. Mater. 12, 99
(1999).
107. Giffin, S. M., McKinnie, I. T., Wadsworth, W. J. et al., Solid state dye laser based on 2-
hydroxyethyl methacrylate and methyl methacrylate co-polymers, Opt. Commun. 161, 163
(1999).
108. Kuwata-Gonokami, M., Jordan, R. H., Dodabalapur, A., Katz, H. E., Schilling, M. L., and
Slusher, R. E., Polymer microdisk and microring lasers, Optics Lett. 20, 3093 (1995).
109. Meier, M., Mekis, A., Dodabalapur, A., Timko, A. Slusher, R. E., Joannopoulos, J. D., and
Nalamasu, O., Laser action from two-dimensional distributed feedback in photonic crystals,
Appl. Phys. Lett. 74, 7 (1999).
110. Gorelik, V. S. and Zhabotubskii, A. M., Spontaneous and stimulated emission spectra of
organic crystals upon two-photon excitation, Optics Spectrosc. 77, 218 (1994).
111. Maslyukov, A., Sokolov, S., Kaivola, M., Nyholm, K., and Popov, S., Solid-state dye laser
with modified poly(methyl methacrylate)-doped active elements, Appl. Optics 34, 1516
(1995).
112. Rahn, M. D. and King, T. A., High-performance solid-state dye laser based on perylene-
orange-doped polycom glass, J. Mod. Optics 45, 1259 (1998).
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