Title of article
Numerical simulation of a pulsed laser pumped distributed-feedback waveguided dye laser by coupledwave theory
Author/Authors
D.، Zuo, نويسنده , , Y.، Oki, نويسنده , , M.، Maeda, نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
-672
From page
673
To page
0
Abstract
A dynamic model of pulsed laser pumped distributed-feedback (DFB) waveguided dye laser based on a coupledwave theory is described. Due to the periodical distribution of the intensities of pump source and stimulated emission along the waveguide, the rate equations of the population densities are turned into the equations of the Fourier coefficients. Coupled-wave equations of optical fields are used to simulate the laser oscillation. Besides the temporal evolution of the output intensity, the spectra can also be obtained by the Fourier transform of the optical fields. Two different configurations of the waveguided dye laser, prefabricated DFB (mainly index coupling), first- and second-order holographic DFB (dynamic gain-coupling), are considered in the model. The simulation shows that: 1) the temporal waveforms of the holographic DFB consist of sharp spikes; 2) the broadened spectral widths resulted from the possible nonuniformities in propagation constant or grating period are less than 50 pm except for the second-order holographic DFB; and 3) strong parasitic oscillations can be observed in the second-order holographic DFB with terminal reflection. These results and the comparisons of some of them to the experiments are reported.
Keywords
Berger code , totally self-checking circuit , two-rail code , TSC Berger code checker , self-testing checker
Journal title
IEEE JOURNAL OF QUANTUM ELECTRONICS
Serial Year
2003
Journal title
IEEE JOURNAL OF QUANTUM ELECTRONICS
Record number
87178
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