Chinese Optics Letters, 2019, 17 (11): 111403, Published Online: Sep. 4, 2019  

High peak power 1.0 μm and tri-wavelength 1.3 μm Nd:ScYSiO5 crystal lasers

Author Affiliations
1 College of Electrical Engineering and Automation, Shandong University of Science and Technology, Qingdao 266590, China
2 College of Electronic and Information Engineering, Shandong University of Science and Technology, Qingdao 266590, China
Figures & Tables

Fig. 1. (a) Experimental configuration of the 1.0 μm Nd:ScYSiO5 electro-optically Q-switched laser. (b) Experimental configuration of the 1.3 μm Nd:ScYSiO5 CW laser.

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Fig. 2. Electro-optically Q-switched laser output power versus absorbed pump power. Inset: the laser spectrum of the electro-optically Q-switched Nd:ScYSiO5 laser.

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Fig. 3. Laser pulse width versus the absorbed pump power.

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Fig. 4. Typical electro-optically Q-switched laser pulse trains. (Inset: the single laser pulse profile.)

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Fig. 5. M2 value and laser beam profile at the highest output power.

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Fig. 6. Average output power versus absorbed pump power of the 1.3 μm CW Nd:ScYSiO5 laser.

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Fig. 7. Output spectra of the 1.3 μm multiwavelength Nd:ScYSiO5 laser.

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Table1. Comparison of the Q-switched laser properties with different Nd-doped oxyorthosilicate crystals

MaterialsQ-switcherA. Power (W)P. Width (ns)P. Energy (μJ)P. Power (kW)Refs.
Nd:ScYSiO5Cr:YAG1.032416.20.7[12]
Nd:LuYSiO5Cr:YAG−0.272934.31.2[20]
Nd:GdYSiO5Cr:YAG1.2087.83003.4[21]
Nd:Lu2SiO5Cr:YAG−0.4712.4292.3[22]
Nd:Sc2SiO5Cr:YAG−0.132744.81.7[23]
Nd:ScYSiO5RTP EO Q-switcher0.513076525.5This work

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Qiangguo Wang, Na Cui, Yongping Yao, Lihua Meng, Lei Li, Lulu Dong, Huiyun Zhang, Shande Liu, Dehua Li. High peak power 1.0 μm and tri-wavelength 1.3 μm Nd:ScYSiO5 crystal lasers[J]. Chinese Optics Letters, 2019, 17(11): 111403.

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