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21.  Malone, K. J., Sanford, N. A., Hayden, J. S., and Sapak, D. L., Integrated optic laser emitting
                               at 905, 1057, and 1356 nm, in Advanced Solid-State Lasers, Pinto, A. A. and Fan, T. Y.,
                               Eds., Proceedings Vol. 15, Optical Society of America, Washington, DC (1993), p. 286.
                          22.  Payne, S. A., Marshall, C. D., Bayramian, A. J., Wilke, G. D., and Hayden, J. S., Properties of
                               a new average power Nd-doped phosphate glass, OSA Proc. Adv. Solid State Lasers, Chai,
                               B. H. T. and Payne, S. A., Eds., 24, 211(1995).
                          23.  Allain, J. Y., Monerie, M., and Poignant, H., Red upconversion Yb-sensitised Pr doped
                               fluoride fibre laser pumped in the 0.8 mm region, Electron. Lett. 27, 1156 (1991).
                                                                            3+
                          24.  Farries, M. C., Morkel, P. R., and Townsend, J. E., Samarium -doped glass laser operating
                               at 651 nm, Electron. Lett. 24, 709 (1988).
                          25.  Carter, J. N., Smart, R. G., Hanna, D. C., and Tropper, A. C., Lasing and amplification in the
                               0.8 mm region in thulium doped fluorozirconate fibers, Electron. Lett. 26, 1759 (1990).
                          26.  Smart, R.G., Carter, J.N., Tropper, A.C., Hanna, D.C., Carter, S.F., and Szebesta, D., A 20 dB
                               gain thulium-doped fluorozirconate fiber amplifier operating at around 0.8 mm,  Electron.
                               Lett. 27, 1123 (1991).
                          27.  Dennis, M. L., Dixon, J. W., and Aggarwal, I., High power upconversion lasing at 810 nm
                               in Tm:ZBLAN fibre, Electron. Lett. 30, 136 (1994).
                          28.  Allain, J. Y., Monerie, M., and Poignant, H., Tunable cw lasing around 0.82, 1.48, 1.88,
                               and 2.35 mm in a thulium-doped fluorozirconate fiber, Electron. Lett. 25, 1660 (1989).
                          29.  Millar, C. A., Brierley, M. C., Hunt, M. H., and  Carter,  S.  F.,  Efficient  up-conversion
                               pumping at 800 nm of an erbium-doped fluoride fiber laser operating at 850 nm, Electron.
                               Lett. 26, 1876 (1990).
                          30.  Zhou, F., Qin, W., Jin, C. et al., Optical gain of CdSSe-doped glass, J. Lumin. 60 & 61, 353
                               (1994).
                          31.  Percival, R. M., Phillips, M. W., Hanna, D. C., and Tropper, A. C., Characterization of
                               spontaneous and stimulated emission from praseodymium ions doped into a silica based
                               monomode optical fiber, IEEE J. Quantum Electron. 25, 2119 (1989).
                          32.  Reekie, L., Mears, R. J., Poole, S. B., and Payne, D. N., Tunable single-mode fiber lasers, J.
                               Lightwave Tech. LT-4, 956 (1986).
                          33.  Alcock, I. P., Ferguson, A. I., Hanna, D. C., and Tropper, A. C., Tunable, continuous-wave
                               neodymium-doped monomode-fiber laser operating at 0.900–0.945 and 1.070–1.135  mm,
                               Optics Lett. 11, 709 (1986).
                                                       3+
                          34.  Maurer, R. D., Operation of a Nd  glass optical maser at 9180 Å, Appl. Opt. 2, 87 (1963).
                          35.  Artem'ev, E. P., Murzin, A. G., and Fromzel, V. A., Room-temperature laser action at 0.92 mm
                               in neodymium glasses, Sov. Phys. Tech. Phys. 22, 274 (1977);  Zh. Tekh. Fiz. 47, 456
                               (1977).
                          36.  Krupke, W. F., Shinn, M. D., Kirchoff, T. A., Finch, D. B., and Boatner, L.A., Promethium-
                               doped phosphate glass laser at 933 and 1098 nm, Appl. Phys. Lett. 51, 2186 (1987).
                          37.  Alcock,  I.  P.,  Ferguson,  A.  I.,  Hanna,  D.  C.,  and  Tropper,  A.  C.,  Continuous-wave
                                                                                                4
                                                                                          4
                               oscillation of a monomode neodymium-doped fiber laser at 0.9  mm on the  F 3/2 fi I 9/2
                               transition, Opt. Commun. 58, 405 (1986).
                                                                                             3+
                          38.  Reekie, L., Jauncey, I. M., Poole, S. B., and Payne, D. N., Diode-laser-pumped Nd -doped
                               fiber laser operating at 938 nm, Electron. Lett. 23, 884 (1987).
                          39.  Hanna, D. C., Percival, R. M., Perry, I. R., Smart, R. G., Suni, P. J., and Tropper, A. C., An
                               ytterbium-doped monomode fiber laser: broadly tunable operation from 1.010 mm to 1.162
                               mm and three-level operation at 974 nm, J. Mod. Opt. 37, 517 (1990).
                          40.  Armitage, J. R., Wyatt, R., Ainslie, B. J., and Craig-Ryan, S. P., Highly efficient 980 nm
                                             3+
                               operation of an Yb -doped silica fiber laser, Electron. Lett. 25, 298 (1989).
                          41.  Allain, J. Y., Monerie, M., and Poignant, H., Q-switched 0.98  mm operation of erbium-
                               doped fluorozirconate fiber laser, Electron. Lett. 25, 1082 (1989).







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