DocumentCode
2894247
Title
Growth, spectroscopic and laser properties of Yb:SrY(BO3)3 for fast lasers
Author
Lukasiewicz, T. ; Pawlak, D. ; Diduszko, R. ; Malinowski, Mariusz ; Skorczakowski, M.
Author_Institution
Inst. of Electron. Mater. Technol., Warsaw, Poland
fYear
2005
fDate
12-17 June 2005
Firstpage
79
Abstract
Among potential materials like: KY(WO4)-KYW, KGd(WO4)-KGW, Y3Al5O12-YAG, glass doped with ytterbium for ultra-fast laser BOYS turns out to have the broadest emission spectrum. However Yb doped glass exhibits very large emission bandwidth but its poor thermal properties and extremely low emission cross section constrains the use of glass for such application. From this point of view ytterbium doped Sr (BOYS) crystal turned out to be very attractive, generating 58 fs pulses. The material melts congruently in relatively low temperature 1400°C making easy the growth of large boules with high optical quality by the Czochralski method. We obtained BOYS crystals 15-18 mm in diam. and 40-50 mm long. Spectroscopic measurements of Yb(10%):BOYS revealed absorption band with maximum around 975.5 nm and bandwidth 10 nm what is much higher than in YAG and is suitable for diode pumping. Absorption spectra in the short wavelength region of BOYS and BOYS:Yb were measured.
Keywords
crystal growth from melt; gadolinium compounds; optical materials; photoluminescence; potassium compounds; solid lasers; strontium compounds; ultraviolet spectra; ytterbium; yttrium compounds; 1400 C; 15 to 18 mm; 40 to 50 mm; 58 fs; Czochralski method; KGd(WO4); KY(WO4); SrY(BO3)3:Yb; YAG; YAl5O12; Yb doped glass; absorption band; absorption spectra; broadest emission spectrum; diode pumping; emission bandwidth; laser properties; material melting; spectroscopic measurements; spectroscopic properties; ytterbium doped Sr crystal; Absorption; Bandwidth; Crystalline materials; Glass; Optical materials; Optical pulse generation; Spectroscopy; Strontium; Wavelength measurement; Ytterbium;
fLanguage
English
Publisher
ieee
Conference_Titel
Lasers and Electro-Optics Europe, 2005. CLEO/Europe. 2005 Conference on
Print_ISBN
0-7803-8974-3
Type
conf
DOI
10.1109/CLEOE.2005.1567868
Filename
1567868
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