High-gain amplification in a liquid phase epitaxial Nd:YAG waveguide

Summary form only given. There is a growing appreciation of the possibilities for high-gain amplification in solid-state laser materials pumped by high-average-power diode lasers. So far the emphasis has been on bulk materials, however planar waveguides offer significant benefits. Their geometry is...

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Hauptverfasser: Shepherd, D.P., Warburton, T.J., Hanna, D.C., Tropper, A.C., Borel, C., Ferrand, B., Rameix, A.
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creator Shepherd, D.P.
Warburton, T.J.
Hanna, D.C.
Tropper, A.C.
Borel, C.
Ferrand, B.
Rameix, A.
description Summary form only given. There is a growing appreciation of the possibilities for high-gain amplification in solid-state laser materials pumped by high-average-power diode lasers. So far the emphasis has been on bulk materials, however planar waveguides offer significant benefits. Their geometry is compatible with that of the diode laser and the confinement allows much smaller pumped volumes and hence higher gain for a given pump power. For example, with the Nd:YAG waveguide laser we have used the pumped volume is one order of magnitude smaller than could be achieved in a bulk medium of the same length.
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There is a growing appreciation of the possibilities for high-gain amplification in solid-state laser materials pumped by high-average-power diode lasers. So far the emphasis has been on bulk materials, however planar waveguides offer significant benefits. Their geometry is compatible with that of the diode laser and the confinement allows much smaller pumped volumes and hence higher gain for a given pump power. For example, with the Nd:YAG waveguide laser we have used the pumped volume is one order of magnitude smaller than could be achieved in a bulk medium of the same length.</abstract><pub>IEEE</pub></addata></record>
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identifier ISBN: 1557524432
ispartof Summaries of papers presented at the Conference on Lasers and Electro-Optics, 1996, p.530-531
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language eng
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Crystals
Diode lasers
Laser excitation
Lenses
Liquid waveguides
Mirrors
Neodymium
Optical materials
Planar waveguides
Solid lasers
title High-gain amplification in a liquid phase epitaxial Nd:YAG waveguide
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