High repetition rate, high peak power, diode pumped Tm:YLF laser
Identifieur interne : 001012 ( Main/Exploration ); précédent : 001011; suivant : 001013High repetition rate, high peak power, diode pumped Tm:YLF laser
Auteurs : J. K. Jabczynski [Pologne] ; Ł. Gorajek [Pologne] ; W. Zendzian [Pologne] ; J. Kwiatkowski [Pologne] ; H. Jelínková [République tchèque] ; J. Šulc [République tchèque] ; M. N Mec [République tchèque]Source :
- Laser Physics Letters [ 1612-2011 ] ; 2009-02.
Descripteurs français
- Pascal (Inist)
- 4255R, 4255X, 4260G, Addition thulium, Domaine temps ns, Durée impulsion, Laser YLF, Laser déclenché, Laser semiconducteur, Laser solide, Lithium Fluorure, Matériau dopé, Modulateur acoustooptique, Pompage par diode, Puissance sortie, Résonateur cavité, Silice fusionnée, Taux répétition élevé, Température ambiante, Yttrium Fluorure.
English descriptors
- KwdEn :
- Acoustooptical modulator, Ambient temperature, Astro, Average power, Best case, Cavity resonators, Czech, Diode, Diode pumping, Doped materials, Gain medium, Gmbh, Gorajek, High peak power, High repetition rate, Jabczynski, Kgaa, Kwiatkowski, Laser, Laser diode, Laser head, Laser phys, Lett, Lithium Fluorides, Lter, Lyot, Online, Online color, Optical society, Output energy, Output power, Peak power, Photonics, Photonics series, Phys, Pulse energy, Pulse width, Q switched laser, Semiconductor lasers, Solid state lasers, Sulc, Thulium additions, Tunable, Verlag, Verlag gmbh, Wang, Yttrium Fluorides, Zendzian, ns range.
- Teeft :
- Astro, Average power, Best case, Czech, Diode, Gain medium, Gmbh, Gorajek, High peak power, Jabczynski, Kgaa, Kwiatkowski, Laser, Laser diode, Laser head, Laser phys, Lett, Lter, Lyot, Online, Online color, Optical society, Output energy, Output power, Peak power, Photonics, Photonics series, Phys, Pulse energy, Solid state lasers, Sulc, Tunable, Verlag, Verlag gmbh, Wang, Zendzian.
Abstract
The room‐temperature, water‐cooled, diode pumped Tm:YLF laser head was elaborated and examined. For pumping the fiber coupled (0.2 mm core diameter) 25‐W laser diode bar emitting at 792‐nm wavelength was deployed. Near 5 W of CW output power and 25% slope efficiency was demonstrated in a short, 70‐mm long resonator. Tuning in 1845–1935 nm wavelength range by means of 2‐plate Lyot filter was demonstrated only in free‐running regime. The fused silica acousto‐optic modulator with above 80% diffraction efficiency for 25‐W power of RF was deployed as the Q‐switch for such a laser. In the best case of Q‐switching regime, up to 10‐mJ output energy with 47‐ns pulse duration, 220 kW peak power was demonstrated for 133 Hz. For higher repetition rate of 2 kHz, 12 kW peak power with 2.5 W of average power was achieved. (© 2009 by Astro Ltd., Published exclusively by WILEY‐VCH Verlag GmbH & Co. KGaA)
Url:
DOI: 10.1002/lapl.200810107
Affiliations:
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Le document en format XML
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<term>Best case</term>
<term>Cavity resonators</term>
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<front><div type="abstract" xml:lang="en">The room‐temperature, water‐cooled, diode pumped Tm:YLF laser head was elaborated and examined. For pumping the fiber coupled (0.2 mm core diameter) 25‐W laser diode bar emitting at 792‐nm wavelength was deployed. Near 5 W of CW output power and 25% slope efficiency was demonstrated in a short, 70‐mm long resonator. Tuning in 1845–1935 nm wavelength range by means of 2‐plate Lyot filter was demonstrated only in free‐running regime. The fused silica acousto‐optic modulator with above 80% diffraction efficiency for 25‐W power of RF was deployed as the Q‐switch for such a laser. In the best case of Q‐switching regime, up to 10‐mJ output energy with 47‐ns pulse duration, 220 kW peak power was demonstrated for 133 Hz. For higher repetition rate of 2 kHz, 12 kW peak power with 2.5 W of average power was achieved. (© 2009 by Astro Ltd., Published exclusively by WILEY‐VCH Verlag GmbH & Co. KGaA)</div>
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