DocumentCode :
27517
Title :
Narrow Linewidth 177.3-nm Nanosecond Laser With High Efficiency and High Power
Author :
Zhi Xu ; Wei Tu ; Feng Yang ; Nan Zong ; Bao-Shan Wang ; Feng-Feng Zhang ; Shen-Jin Zhang ; Zhi-Min Wang ; Qin-Jun Peng ; Da-Fu Cui ; Jing-Yuan Zhang ; Xiao-Yang Wang ; Chuang-Tian Chen ; Zu-Yan Xu
Author_Institution :
Key Lab. of Functional Crystal & Laser Technol., Tech. Inst. of Phys. & Chem., Beijing, China
Volume :
26
Issue :
10
fYear :
2014
fDate :
15-May-14
Firstpage :
980
Lastpage :
982
Abstract :
We demonstrate a high-efficiency high average power vacuum ultraviolet (VUV) 177.3-nm laser with a narrow linewidth generated by second harmonic (SH) generation from a nanosecond (ns) 355-nm laser in the KBe2BO3F2 crystal. The 355-nm pumping source was a frequency-tripled Q-switched 1064-nm Nd:YAG oscillator-amplifier laser system, in which a quartz etalon was used to compress the linewidth of 1064-nm laser. Under a pump power of 5.2 W at 355 nm with a linewidth of 2 pm, a high average power of 146.5 mW at 177.3 nm with a linewidth of ~0.71 pm was obtained, corresponding to an SH conversion efficiency as high as 2.8%. This is, to the best of our knowledge, the highest output power and highest SH conversion efficiency for the ns 177.3-nm lasers. This VUV coherent light can be used as light source for fine precision spectroscopy and semiconductor photolithography owing to its narrow linewidth, high energy resolution, and high average power.
Keywords :
beryllium compounds; laser transitions; nanophotonics; optical harmonic generation; optical pumping; potassium compounds; solid lasers; KBe2BO3F2; YAG:Nd; fine precision spectroscopy; frequency-tripled Q-switched oscillator-amplifier laser system; high-efficiency high average power vacuum ultraviolet laser; laser transitions; narrow linewidth nanosecond laser; power 5.2 W; pumping source; quartz etalon; second harmonic generation; semiconductor photolithography; wavelength 1064 nm; wavelength 177.3 nm; wavelength 355 nm; Bandwidth; Crystals; Frequency conversion; Laser beams; Power generation; Power lasers; Pump lasers; Narrow linewidth; SHG; VUV; high power;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2014.2311091
Filename :
6763010
Link To Document :
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