Output energy parameters of a KULON-10Cu-UV laser
The output energy parameters of an industrial KULON copper vapour laser equipped with a nonlinear frequency converter based on DKDP and BBO crystals are studied. The average and peak powers, as well as the energies and pulse durations of radiation at wavelengths of 510, 578, 255, 271, and 289 nm, ar...
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Veröffentlicht in: | Quantum electronics (Woodbury, N.Y.) N.Y.), 2009-05, Vol.39 (5), p.405-409 |
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container_title | Quantum electronics (Woodbury, N.Y.) |
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creator | Batenin, Vyacheslav M Karpukhin, Vyacheslav T Lepekhin, N M Lyabin, Nikolai A Malikov, Mikhail M Priseko, Yu S Filippov, V G Chursin, A D |
description | The output energy parameters of an industrial KULON copper vapour laser equipped with a nonlinear frequency converter based on DKDP and BBO crystals are studied. The average and peak powers, as well as the energies and pulse durations of radiation at wavelengths of 510, 578, 255, 271, and 289 nm, are measured in the regime of high-speed pulse modulation, which is used in lasers of this series. The maximum average power was 420 mW at a wavelength of 271 nm (DKDP) and 350 and 110 mW at 255 and 289 nm, respectively (BBO). It is experimentally shown that the average energy characteristics of UV radiation can be controlled on-line by changing the pulse repetition rate of the laser. (lasers and amplifiers) |
doi_str_mv | 10.1070/QE2009v039n05ABEH013954 |
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The average and peak powers, as well as the energies and pulse durations of radiation at wavelengths of 510, 578, 255, 271, and 289 nm, are measured in the regime of high-speed pulse modulation, which is used in lasers of this series. The maximum average power was 420 mW at a wavelength of 271 nm (DKDP) and 350 and 110 mW at 255 and 289 nm, respectively (BBO). It is experimentally shown that the average energy characteristics of UV radiation can be controlled on-line by changing the pulse repetition rate of the laser. 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The average and peak powers, as well as the energies and pulse durations of radiation at wavelengths of 510, 578, 255, 271, and 289 nm, are measured in the regime of high-speed pulse modulation, which is used in lasers of this series. The maximum average power was 420 mW at a wavelength of 271 nm (DKDP) and 350 and 110 mW at 255 and 289 nm, respectively (BBO). It is experimentally shown that the average energy characteristics of UV radiation can be controlled on-line by changing the pulse repetition rate of the laser. (lasers and amplifiers)</abstract><cop>United States</cop><pub>IOP Publishing</pub><doi>10.1070/QE2009v039n05ABEH013954</doi><tpages>5</tpages></addata></record> |
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subjects | CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS COPPER CRYSTALS ELECTROMAGNETIC RADIATION ELEMENTS FREQUENCY CONVERTERS GAS LASERS LASERS METAL VAPOR LASERS METALS MODULATION NONLINEAR PROBLEMS PEAK LOAD PULSES RADIATIONS TRANSITION ELEMENTS ULTRAVIOLET RADIATION WAVELENGTHS |
title | Output energy parameters of a KULON-10Cu-UV laser |
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