Multiwavelength upconversion waveguide laser

Coherent light generators – Thin film laser

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372 68, 372 41, 372 50, 372 23, 372 75, 385131, H01S 317, H01S 30941, G02F 123

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054369193

ABSTRACT:
A multiwavelength upconversion waveguide laser producing visible or ultraviolet wavelength radiation comprising a semiconductor laser diode producing relatively long wavelength radiation, a channel waveguide having a thin film material which converts the relatively long wavelength radiation into visible or ultraviolet wavelength radiation, and a optical resonator which recirculates the visible or ultraviolet wavelength radiation. The optical resonator may use an output optical coating or one or more Bragg grating reflectors as an output coupler. One or more optical resonators may be used to produce one or more visible or ultraviolet radiation wavelengths. One or more independently controllable lightwave modulators are used to modulate the visible or ultraviolet wavelength radiation.

REFERENCES:
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patent: 5226049 (1993-07-01), Grubb
patent: 5290730 (1994-03-01), McFarlane et al.
Wada, O. "Optoelectronic Integrated Circuits", Chptr 27 in Electro Optics Handbook, McGrawHill, New York 1993 pp. 27.17, 27.26.
Yeh, D. C. et al. "Efficient Frequency Conversion of Tm.sup.3+ . . .", J. of Applied Physics 63(9), 1 May 1988 pp. 4644-4650.
F. Auzel et al, Comparison and Efficiency of Materials For Summation of Photons Assisted by Energy Transfer, J. of Luminescence, 8, 32, 1973, pp. 32-43 No month avail.
G. Ozen et al, Enhanced Tm3+ blue emission in Tm, Yb, co-doped fluorophosphate glasses due to back energy transfer processes, Appl. Phys. Lett. 62, pp. 928-930, 1993 Mar.
J. Roman et al, Neodymium-doped glass channel waveguide laser containing an intergrated distributed Bragg reflector, Appl. Phys. 61 pp. 2744-2746, 1992 (Dec.).

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