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CW 100 kW radio frequency-free-electron laser design at 10 mu m

The authors describe the 100 kW continuous-wave (CW) radio frequency free-electron laser at 10 mu m to be built at Boeing Defense and Space Group in collaboration with Los Alamos National Laboratory. The authors discuss the criteria which led to the selection of the operating point. The authors outl...

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Published in:IEEE journal of quantum electronics 1991-12, Vol.27 (12), p.2605-2612
Main Authors: Parazzoli, C.G., Rodenburg, R.E., Romero, J.B., Adamski, J.L., Pistoresi, D.J., Shoffstall, D.R., Quimby, D.C.
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cited_by cdi_FETCH-LOGICAL-c300t-81e68e7017f27d52a04c76cd2c49b01cbd41049255d8d88e55e2f4318b20262a3
cites cdi_FETCH-LOGICAL-c300t-81e68e7017f27d52a04c76cd2c49b01cbd41049255d8d88e55e2f4318b20262a3
container_end_page 2612
container_issue 12
container_start_page 2605
container_title IEEE journal of quantum electronics
container_volume 27
creator Parazzoli, C.G.
Rodenburg, R.E.
Romero, J.B.
Adamski, J.L.
Pistoresi, D.J.
Shoffstall, D.R.
Quimby, D.C.
description The authors describe the 100 kW continuous-wave (CW) radio frequency free-electron laser at 10 mu m to be built at Boeing Defense and Space Group in collaboration with Los Alamos National Laboratory. The authors discuss the criteria which led to the selection of the operating point. The authors outline the single-accelerator master-oscillator power-amplifier concept. This approach and the wavelength were chosen on the basis of maximum cost-effectiveness, including utilization of existing hardware, reasonable technical risk, and potential for future applications. The major experimental goals for the average power laser experiment (APLE) program are discussed, and the expected performance is considered.< >
doi_str_mv 10.1109/3.104139
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The authors discuss the criteria which led to the selection of the operating point. The authors outline the single-accelerator master-oscillator power-amplifier concept. This approach and the wavelength were chosen on the basis of maximum cost-effectiveness, including utilization of existing hardware, reasonable technical risk, and potential for future applications. The major experimental goals for the average power laser experiment (APLE) program are discussed, and the expected performance is considered.&lt; &gt;</abstract><cop>New York, NY</cop><pub>IEEE</pub><doi>10.1109/3.104139</doi><tpages>8</tpages></addata></record>
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identifier ISSN: 0018-9197
ispartof IEEE journal of quantum electronics, 1991-12, Vol.27 (12), p.2605-2612
issn 0018-9197
1558-1713
language eng
recordid cdi_ieee_primary_104139
source IEEE Electronic Library (IEL) Journals
subjects 426002 - Engineering- Lasers & Masers- (1990-)
AMPLIFIERS
Cathodes
Collaboration
DESIGN
Electromagnetism
electron and ion optics
Electron accelerators
ELECTRONIC EQUIPMENT
ENGINEERING
Exact sciences and technology
FREE ELECTRON LASERS
Fundamental areas of phenomenology (including applications)
Laboratories
LANL
Laser beams
LASERS
NATIONAL ORGANIZATIONS
Optical design
Optical resonators
Physics
PULSE AMPLIFIERS
Radiation by moving charges
Radio frequency
RF SYSTEMS
Undulators
US DOE
US ORGANIZATIONS
title CW 100 kW radio frequency-free-electron laser design at 10 mu m
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