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Thermal Optical Properties, Q-Switching And Frequency Tuning Of An Nd: Lggg Laser Based On The F-4(3/2) -> I-4(13/2) Transition Of A Neodymium Ion

QUANTUM ELECTRONICS(2021)

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Abstract
Laser characteristics of continuous-wave (cw) and passively Q-switched Nd: LGGG lasers based on the F-4(3/2) -> I-4(13/2) transition of an neodymium ion are investigated. The lasing spectra of the cw and the Q-switching regimes are studied in detail. The thermal optical coefficient for the Nd:LGGG crystal at a wavelength of 1.33 mu m is estimated to be 15.3 x 10(-6) K-1. By inserting a quartz plate at the Brewster angle, the frequency of the Nd: LGGG laser is tuned. In the cw regime, the maximum output power at an incident pump power of 7.09 W is 802 mW and a slope efficiency is 13.2%. In the Q-switching regime, a minimum pulse duration of 9.75 ns is obtained with an output power of 176 mW and a repetition rate of 8 kHz. The maximum pulse energy and the highest peak power are 25.4 mu J and 2.4 kW, respectively.
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Key words
Q-switching, Nd:LGGG disordered crystal, tunable laser
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