DocumentCode :
1287085
Title :
Optical absorption and stimulated emission of neodymium in yttrium orthosilicate
Author :
Beach, Ray ; Shinn, Michelle D. ; Davis, L. ; Solarz, Richard W. ; Krupke, William F.
Author_Institution :
Lawrence Livermore Nat. Lab., CA, USA
Volume :
26
Issue :
8
fYear :
1990
fDate :
8/1/1990 12:00:00 AM
Firstpage :
1405
Lastpage :
1412
Abstract :
A spectroscopic investigation of the biaxial crystal yttrium orthosilicate doped with Nd3+(Nd3+:Y2SiO5) has been performed. Spectrally and orientationally resolved emission cross sections necessary for the evaluation of laser performance on the Nd3+ 4F3/2-4I 9/2 and 4F3/2-4I11/2 transitions have been determined. The Judd-Ofelt theory has been applied to measured values of optical absorption line strengths to obtain the orientation averaged intensity parameters: Ω2-3.34×10-20 cm2, Ω 4=4.35×10-20 cm2, and Ω6=5.60×10-20 cm2. These Judd-Ofelt intensity parameter values are significantly different from those previously reported by A.M. Tkachuk et al. Using these intensity parameters, the Nd3+ 4F2 metastable state lifetime is predicted to be 225 μs. Measured low Nd concentration 4F3/2 lifetimes of 214 μs indicate a high radiative quantum efficiency. Because of the Stark level splitting of the Nd3+ 4F3/2 and 4I9/2 manifolds, laser operation at twice one of the Cs atomic resonance filter acceptance wavelengths is possible
Keywords :
impurity and defect absorption spectra of inorganic solids; neodymium; radiative lifetimes; solid lasers; stimulated emission; visible spectra of inorganic solids; yttrium compounds; 214 mus; 225 mus; 400 to 950 nm; Judd-Ofelt theory; Stark level splitting; Y2SiO5:Nd3+; biaxial crystal; high radiative quantum efficiency; laser operation; laser performance; metastable state lifetime; optical absorption; optical absorption line strengths; orientation averaged intensity parameters; orientationally resolved emission cross sections; spectroscopic investigation; stimulated emission; Absorption; Atom lasers; Atomic beams; Judd-Ofelt theory; Metastasis; Neodymium; Optical filters; Spectroscopy; Stimulated emission; Yttrium;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.59689
Filename :
59689
Link To Document :
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