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Design of a kJ-class HiLASE laser as a driver for inertial fusion energy 被引量:2
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作者 Antonio Lucianetti Magdalena Sawicka +6 位作者 ondrej slezak Martin Divoky Jan Pilar Venkatesan Jambunathan Stefano Bonora Roman Antipenkov Tomas Mocek 《High Power Laser Science and Engineering》 SCIE CAS 2014年第2期1-10,共10页
We present the results of performance modeling of a diode-pumped solid-state HiLASE laser designed for use in inertial fusion energy power plants. The main amplifier concept is based on a He-gas-cooled multi-slab arch... We present the results of performance modeling of a diode-pumped solid-state HiLASE laser designed for use in inertial fusion energy power plants. The main amplifier concept is based on a He-gas-cooled multi-slab architecture similar to that employed in Mercury laser system. Our modeling quantifies the reduction of thermally induced phase aberrations and average depolarization in Yb3+:YAG slabs by a combination of helium cryogenic cooling and properly designed(doping/width) cladding materials. 展开更多
关键词 ASE BIREFRINGENCE CRYOGENIC cooling SLAB lasers thermooptic effects
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High-precision group-delay dispersion measurements of optical fibers via fingerprint-spectral wavelength-to-time mapping 被引量:1
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作者 Takashi Ito ondrej slezak +2 位作者 Masahiro Yoshita Hidefumi Akiyama Yohei Kobayashi 《Photonics Research》 SCIE EI 2016年第1期13-16,共4页
The group-delay dispersion of an optical fiber was measured with the time-of-flight method, using fingerprint-like characteristic spectra from a mode-locked fiber laser source. To determine the group-delay dispersion ... The group-delay dispersion of an optical fiber was measured with the time-of-flight method, using fingerprint-like characteristic spectra from a mode-locked fiber laser source. To determine the group-delay dispersion up to the fourth order, least-squares fitting was applied to the overall time waveform mapped on the time axis for the fingerprint-spectral broadband pulses through a long optical fiber. The analysis of all 4003 data points reduced statistical uncertainty, and provided second-, third-, and fourth-order dispersion with uncertainties of 0.02%, 0.4%, and 4%,respectively. 展开更多
关键词 length time High-precision group-delay dispersion measurements of optical fibers via fingerprint-spectral wavelength-to-time mapping
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Design of kJ-class HiLASE laser as a driver for inertial fusion energy——CORRIGENDUM
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作者 Antonio Lucianetti Magdalena Sawicka +6 位作者 ondrej slezak Martin Divoky Jan Pilar Venkatesan Jambunathan Stefano Bonora Roman Antipenkov Tomas Mocek 《High Power Laser Science and Engineering》 SCIE CAS 2014年第3期102-102,共1页
关键词 ASE BIREFRINGENCE CRYOGENIC cooling SLAB lasers thermooptic effects
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Faraday effect measurements of holmium oxide(Ho2O3) ceramics-based magneto-optical materials
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作者 David Vojna Ryo Yasuhara +5 位作者 Hiroaki Furuse ondrej slezak Simon Hutchinson Antonio Lucianetti Tomas Mocek Miroslav Cech 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第1期7-12,共6页
Faraday effect measurements of holmium oxide(Ho_2O_3) ceramics-based magneto-optical materials, highly potential material candidates for high-energy laser Faraday isolators, are presented in this paper. Temperature de... Faraday effect measurements of holmium oxide(Ho_2O_3) ceramics-based magneto-optical materials, highly potential material candidates for high-energy laser Faraday isolators, are presented in this paper. Temperature dependence of the Verdet constant of nondoped Ho_2O_3 ceramics was measured for temperatures 15–305 K at 1.064 μm wavelength.The Verdet constant dispersion for wavelengths 0.5–1 μm and 1.064 μm was measured for both nondoped Ho_2O_3 ceramics and Ho_2O_3 ceramics doped with terbium Tb3+(0.2 at. %) and cerium Ce3+(0.1 at. %) ions. The results suggest that the relatively low level of doping of Ho_2O_3 with these ions has no significant boosting impact on the Faraday effect. Therefore, other compositions of Ho_2O_3 ceramics-based magneto-optical materials, as well as various doping concentrations, should be further examined. 展开更多
关键词 Faraday effect MAGNETO-OPTICS optical materials
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