## Proceedings of LFNM'...: International Workshop on Laser and Fiber-optical Networks Modeling, Volume 5Kharkiv State University of Radio Electronics, 2003 - Fiber optics |

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Page 41

We consider also the linear eigen - problem when active layer characteristics are

fixed and not recalculated . The eigen - function of the round - trip operator P is

the oscillating mode and the corresponding eigen - value y determines the

...

We consider also the linear eigen - problem when active layer characteristics are

fixed and not recalculated . The eigen - function of the round - trip operator P is

the oscillating mode and the corresponding eigen - value y determines the

**losses**...

Page 196

The field concentration and radiation

fibre size ( number of HF lattice periods ) . ... At that , these

depend on the HFs dimension ( number of HF lattice periods ) , air hole diameter

and hole ...

The field concentration and radiation

**loss**of such HFs strictly depends on thefibre size ( number of HF lattice periods ) . ... At that , these

**losses**stronglydepend on the HFs dimension ( number of HF lattice periods ) , air hole diameter

and hole ...

Page 212

In this case , there are dispersion

optical fiber output decreases . The infringement of total reflection conditions at

optical fiber stationary mode is possible subject to change of optical signal ...

In this case , there are dispersion

**losses**in the cover , and the signal level on theoptical fiber output decreases . The infringement of total reflection conditions at

optical fiber stationary mode is possible subject to change of optical signal ...

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### Contents

LFNM Plenary Sessions | 1 |

Extraction of Spectra and Theresholds from FullWave Lasing Eigenvalue Problems Invited | 19 |

Design and Evaluation of High Speed DBR Lasers for Analog and Digital Transmission Invited | 32 |

Copyright | |

21 other sections not shown

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active allows amplitude analysis angle application approximation beam calculated carrier cavity characteristics coefficient complex components computational considered constant corresponding coupling crystal decrease dependence described determined device dielectric diffraction direction dispersion distance distribution dynamics e-mail effective electric Electronics energy equation erbium fiber field Figure frequency function gain grating harmonic IEEE incident increase influence initial intensity interaction laser layer length light losses material measurements medium method mode modulation nonlinear normal numerical observed obtained operation optical output parameters periodic phase photonic photonic crystal Physics plane polarization possible presented problem propagation properties pulse pumping quantum radiation radius range REFERENCES reflection refractive index region resonance scattering shown shows signal simulation soliton solution spatial structure temperature thickness threshold transmission transverse Ukraine University VCSEL vector wave waveguide wavelength