Author Affiliations
Abstract
1 HiLASE Centre, Institute of Physics of the Czech Academy of Sciences, Dolní Břežany, Czech Republic
2 Institute of Optics and Quantum Electronics, Friedrich Schiller University Jena, Jena, Germany
3 Helmholz Institute Jena, Jena, Germany
We present a diode-pumped, electro-optically Q-switched Tm:YAG laser with a cryogenically cooled laser crystal at 120 K. Output pulses of up to 2.55 mJ and 650 ns duration were demonstrated in an actively Q-switched configuration with a repetition rate of 1 Hz. By using cavity dumping the pulse duration was shortened to 18 ns with only a slightly lower output energy of 2.22 mJ. Furthermore, using a simplified rate equation model, we discuss design constraints on the pump fluence in a pulse pump approach for Tm:YAG to maximize the energy storage capability at a given pump power.
cryogenic condition laser Q-switch short-wave infrared Tm:YAG 
High Power Laser Science and Engineering
2021, 9(2): 02000e11
Author Affiliations
Abstract
HiLASE Centre , Institute of Physics of the Czech Academy of Sciences , Za Radnicí 828/5 , 25241 , Dolní Břežany , Czech Republic
Development of high energy laser sources with nanosecond pulses at several hertz values for repetition rate has been very attractive in recent years due to their great potential for practical applications. With the recent advancement in fabricating large size laser quality transparent ceramics, diode pumped solid-state laser generating pulse energy of 100 J at 10 Hz has been recently realized at HiLASE center using Yb:YAG ceramic with Cr:YAG cladding. This review discusses Yb based high energy lasers, specific laser geometries for efficient thermal management and the role of transparent ceramics in such diode pumped high-energy-class solid-state lasers around the world.
diode pumped solid-state lasers high energy lasers laser materials transparent ceramics 
High Power Laser Science and Engineering
2018, 6(4): 04000e62

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