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Publikováno v:
Optics letters. 19(22)
A passively Q-switched waveguide laser operating at 1.054 μm has been demonstrated in a Nd-doped phosphate glass. The channel waveguide was fabricated by K-ion exchange from a nitrate melt. Passively Q-switched pulses were achieved by placement of a
Publikováno v:
Optics letters. 16(14)
Channel waveguides fabricated in Nd-doped glass were used as gain elements for extended-cavity lasers. End-fire pumping was performed with a Ti: sapphire laser operating at 807 nm. The 4-nm FWHM output spectrum was centered near 1057 nm. Slope effici
Publikováno v:
Optics letters. 15(7)
A continuous-wave integrated-optic channel waveguide laser operating at 1.057 microm has been fabricated in neodymium-doped soda-lime-silicate laser glass. The device was end-fire pumped with the 0.528-microm line of an argon-ion laser. Threshold for
Publikováno v:
Properties and Characteristics of Optical Glass III.
Waveguide lasers formed by ion exchange in rare-earth-doped glasses have emerged as an attractive new technology on the threshold of commercial insertion. These devices can be used as both laser oscillators and optical amplifiers. In this article, we
Autor:
K. J. Malone
Publikováno v:
SPIE Proceedings.
Integrated-optical devices in rare-earth-doped glasses have emerged as an attractive new technology on the threshold of wide-scale manufacturing and commercial insertion. These devices can be used both as laser oscillators and optical amplifiers. The
Publikováno v:
Advanced Solid State Lasers.
Integrated optic lasers and amplifiers have been demonstrated in neodymium-doped glasses. These devices have operated near 1057 nm in silicate glasses and 1057 and 1355 nm in phosphate glasses [1,2,3]. Laser action at 905 nm has been realized in neod
Publikováno v:
Optical Society of America Annual Meeting.
Rare-earth-doped integrated optic waveguide lasers have been demonstrated in glass, LiNbO3, and other host materials. This technology offers a variety of new components that include diode-pumped amplifiers and lasers. The planar geometry is particula
Publikováno v:
Optical Society of America Annual Meeting.
The rare earth-doping of planar and channel glass waveguide structures is evolving into a new device technology that is distinct from rare earth-doping fibers. This is particularly true since the VLSI processing techniques used for waveguide fabricat
Publikováno v:
Integrated Photonics Research.
Rare-earth doping of integrated-optic devices fabricated in glass offers the simultaneous incorporation of active and passive components into a material system formerly regarded as being only passive. Previously,1 we described the operation of optica