Page 225 - Handbook of Lasers
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171.  Boj, S., Delavaque, E., Allain, J. Y., Bayon, J. F., Niay, P., and Bernage, P., High efficiency
                               diode pumped thulium-doped silica fibre lasers with intracore Bragg gratings in the 1.9-
                               2.1 mm band, Electron. Lett. 30, 1019 (1994).
                         172.  Hanna, D. C., Jauncey, I. M., Percival, R. M., Perry, I. R., Smart, R. G., Suni, P. J., Townsend,
                               J. E., and Tropper, A. C., Continuous-wave oscillation of a monomode  thulium-doped
                               fluorozirconate fiber, Electron. Lett. 24, 935 (1988).
                                                                          3+
                                                                              3+
                         173.  Ghisler, C., Luethy, W., and Weber, H. P., Tuning of a Tm :Ho :silica fiber laser at 2 mm,
                               IEEE J. Quantum Electron. 31, 1877 (1995)
                         174.  Carter, J.N., Smart, R.G., Hanna, D.C., and Tropper, A.C., CW diode-pumped operation of
                               1.97 mm thulium-doped fluorozirconate fiber laser, Electron. Lett. 26, 599 (1990).
                         175.  Allain,  J.  Y.,  Monerie,  M.,  and  Poignant,  H.,  High-efficiency  cw  thulium-sensitised
                               holmium-doped fluoride fibre laser operating at 2.04 mm, Electron. Lett. 27, 1513 (1991).
                         176.  Hanna, D. C., Percival, R. M., Smart, R. G., Townsend, J. E., and Tropper, A. C., Continuous
                               wave oscillation of a holmium-doped silica fiber laser, Electron. Lett. 25, 593 (1989).
                         177.  Percival, R. M., Szebesta, D., Davey, S. T., Swain, N. A., and King, T. A., High efficiency
                               operation of 890-pumped holmium fluoride fibre laser, Electron. Lett. 28, 2064, (1992).
                         178.  Veinberg, T. I., Zhmyreva, I. A., Kolobkov, V. P., and Kudryashov, P. I., Laser action of
                                 3+
                               Ho   ions  in  silicate  glasses  coactivated  by  holmium,  erbium,  and  ytterbium,  Opt.
                               Spectrosc. USSR 24, 441 (1968); Opt. Specktrosk. 24, 823 (1968).
                         179.  Gandy, H. W. and Ginther, R. J., Stimulated emission from holmium activated silicate glass,
                               Proc. IRE 50, 2113 (1962).
                         180.  Percival, R. M., Carter, S. F., Szebesta, D., Davey, S. T., and Stallard, W. A., Thulium-doped
                               monomode fluoride fibre laser broadly tunable from 2.25 to 2.5 mm, Electron. Lett. 27, 1912
                               (1991).
                         181.  Allen, R. and Esterowitz, L., CW diode pumped 2.3 mm fiber laser, Appl. Phys. Lett. 55, 721
                               (1989).
                         182.  Esterowitz, L., Allen, R., and Aggarwal, I., Pulsed laser emission at 2.3 mm in a thulium-
                               doped fluorozirconate fiber, Electron. Lett. 24, 1104 (1988).
                                                                                  3+
                                                                                      3+
                         183.  Allain, J. Y., Monerie, M., and Poignant, H., Energy transfer in Er /Pr -doped fluoride
                               glass fibers and application to lasing at 2.7 mm, Electron. Lett. 27, 445 (1991).
                         184.  Auzel, F., Meichenin, D., and Poignant, H., Tunable continuous-wave room-temperature
                                3+
                               Er -doped ZrF -based glass laser between 2.69 and 2.78  mm,  Electron. Lett. 24, 1463
                                           4
                               (1988)
                         185.  Brierley, M. C. and France, P.W., Continuous wave lasing at 2.7 mm in an erbium doped
                               fluorozirconate fiber, Electron. Lett. 24, 935 (1988).
                         186.  O'Sullivan, M. S., Chrostowski, J., Desurvire, E., and Simpson, J.R., High-power, narrow-
                                        3+
                               linewidth Er -doped fiber laser, Optics Lett. 14, 438 (1989).
                         187.  Allen, R. and Esterowitz, L., Diode-pumped single-mode fluorozirconate fiber laser from
                                 4
                               the  I 11/2  fi  4 I 13/2  transition in erbium, Appl. Phys. Lett. 56, 1635 (1990).
                         188.  Allain, J. Y., Monerie, M., and Poignant, H., Erbium-doped fluorozirconate single-mode
                               fiber lasing at 2.71 mm, Electron. Lett. 25, 28 (1989).
                         189.  Ronarch, D., Guibert, M., Auzel, F., Mechenin, D., Allain, J. Y., and Poignant, H., 35 dB
                               optical gain at 2.716 mm in erbium doped ZBLAN fiber pumped at 0.642 mm, Electron. Lett.
                               27, 511 (1991).
                                                                          3+
                         190.  Pollack, S. A. and Robinson, M., Laser emission of Er  in ZrF -based fluoride glass,
                                                                                  4
                               Electron. Lett. 24, 320 (1988).
                                                                        3+
                         191.  Wetenkamp, L., Efficient cw operation of a 2.9 mm Ho -doped fluorozirconate fiber laser
                               pumped at 640 nm, Electron. Lett. 26, 883 (1990).
                         192.  Többen, H., CW lasing at 3.45 mm in erbium-doped fluorozirconate fibres,  Frequenz 45,
                               250 (1991).







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