By R. G. Pappalardo (auth.), Baldassare Di Bartolo (eds.)
This publication offers an account of the direction "Spectroscopy of Solid-State Laser-Type fabrics" held in Erice, Italy, from June sixteen to 30, 1985. This assembly was once geared up through the foreign college of Atomic and Molecular Spectroscopy of the "Ettore Majorana" Centre for medical tradition. the target of the path was once to offer and view the hot advances in spectroscopy and theoretical modelling appropriate to the translation of luminescence and laser phenomena in different periods of solid-state fabrics. The on hand solid-state matrices (e.g. halides, oxides, glasses, semiconductors) and the entire diversity of attainable activators (transition ions, infrequent earth ions, post-transition ions, actinides, colour centres) have been thought of. via bringing jointly experts within the fields of solid-state luminescence and of solid-state laser fabrics, this direction supplied a much-needed discussion board for the serious . overview of prior advancements within the R&D of solid-state lasers. extra targets of the assembly have been to spot new sessions of host/activator platforms that exhibit promise of laser operation; to alert researchers in solid-state luminescence to present technological wishes for solid-state tunable lasers working within the seen and infrared spectral areas; and usually to supply the medical historical past for complex paintings in sturdy country lasers. a complete of seventy one members got here from fifty four laboratories and 21 countries (Austria, Belgium, Canada, F.R. of Germany, France, Greece, eire, Israel, Italy, the Netherlands, P.R. of China, Poland, Rumania, Sweden, Switzerland, South Korea, Spain, Turkey, uk, U.S.A. and U.S.S.R.).
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Extra info for Spectroscopy of Solid-State Laser-Type Materials
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In x-ray lithography the requirements are for short laser pulses 1 ns), short wavelengths, pulse energy of 1 to 10 J, and prf (pulse repetition frequency) as required by the actual device throughput. Laser powers of 100 Ware viewed as adequate for prototype devices, to be later upsca1ed by an order of magnitude. In the case of material processing, the short wavelength of solid-state lasers would couple more efficiently to metals, especially high-reflectivity metals. (~ As part of this reassessment of solid-state laser devices, the LLNL scientists have also investigated novel pumping concepts: pumping by ebeam excitation of phosphors; and by laser-diodes, as a spin-off of recent developments in efficient laser-diode arrays.
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Spectroscopy of Solid-State Laser-Type Materials by R. G. Pappalardo (auth.), Baldassare Di Bartolo (eds.)