New ytterbium-phosphate glass for diode-pumped lasers
B. I. Galagan, Iryna Glushchenko, Boris I. Denker, Viktor E. Kisel, Sergey V. Kurilchik, Н. В. Кулешов, Sergei E. Sverchkov
Abstract
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B. I. Galagan, Iryna Glushchenko, Boris I. Denker, Viktor E. Kisel, Sergey V. Kurilchik, Н. В. Кулешов, Sergei E. Sverchkov
Abstract
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A new ytterbium laser glass based on an alumoborophosphate composition is developed. It is shown that the chemical and thermal stabilities of this glass are record-high for phosphate glasses and that its spectral and luminescent characteristics compare well with popular laser glasses. A mould of laser-quality glass doped with ytterbium with a concentration of 5 × 10 20 cm -3 is synthesised. Active laser elements 5 × 5 × 2 mm in size are prepared from this glass for longitudinal diode pumping. These elements were used to fabricate a laser, whose output power in the cw regime reached 783 mW and maximum slope efficiency was 28.9%. Pulses with a duration of ∼150 fs and a peak power of about 5 kW are obtained in the passive mode-locking regime.
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A new ytterbium laser glass based on an alumoborophosphate composition is developed. It is shown that the chemical and thermal stabilities of this glass are record-high for phosphate glasses and that its spectral and luminescent characteristics compare well with popular laser glasses. A mould of laser-quality glass doped with ytterbium with a concentration of 5 × 10 20 cm -3 is synthesised. Active laser elements 5 × 5 × 2 mm in size are prepared from this glass for longitudinal diode pumping. These elements were used to fabricate a laser, whose output power in the cw regime reached 783 mW and maximum slope efficiency was 28.9%. Pulses with a duration of ∼150 fs and a peak power of about 5 kW are obtained in the passive mode-locking regime.
Key concepts: Ytterbium, Laser, Materials science, Phosphate glass, Diode, Optoelectronics, Laser diode, Doping