Title of article :
Multiwavelength diode-cladding-pumped Nd/sup 3+/-doped germano-aluminosilicate fiber laser
Author/Authors :
S.D.، Jackson, نويسنده , , Li، Yahua نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-1117
From page :
1118
To page :
0
Abstract :
Simultaneous multiwavelength oscillation at 1060 and 1090 nm has been produced from a free-running Nd/sup 3+/doped multicomponent silica fiber laser. As a result of co-doping with both Al/sub 2/O/sub 3/ and GeO/sub 2/, the Nd/sup 3+/ ions are situated at separate sites relating to either Al/sup 3+/-rich or Ge/sup 4+/-rich regions of the germano-aluminosilicate glass. The slope efficiency of the combined ~1-(mu)m output was ~52% (56%) with respect to the launched (absorbed) pump power. The 1060-nm emission reaches threshold first because of the greater number of Nd/sup 3+/ ions that are located at Al/sup 3+/-rich sites. On chopping the pump light the relaxation oscillations relating to the 1090-nm emission are antiphase with the oscillations observed with the 1060nm emission. A degree of spectral overlap exists between the fluorescence emitted from Nd/sup 3+/ ions located at each site. Power equalization (to ~1 W each) of the 1060- and 1090-nm emissions was carried out by way of Raman amplification that occurred either internally or externally to the Nd/sup 3+/-doped silica fiber laser.
Keywords :
Laminated waveguide , low-temperature co-fired ceramic (LTCC) , rectangular waveguide (RWG) , waveguide transition , millimeter wave
Journal title :
IEEE JOURNAL OF QUANTUM ELECTRONICS
Serial Year :
2003
Journal title :
IEEE JOURNAL OF QUANTUM ELECTRONICS
Record number :
87365
Link To Document :
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