## LFNM 2003: Proceedings of LFNM 2003 : 5th International Workshop on Laser and Fiber-optical Networks Modeling : Alushta, Crimea, Ukraine, 19-20 September 2003 |

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Page 79

EFFECT OF EXTERNALLY APPLIED

- ACTION IN A LITHIUM NIOBATE WAVEGUIDE E . Smirnov , V . Shandarov

State University of Control Systems and Radioelectronics 40 Lenin Ave . , Tomsk

...

EFFECT OF EXTERNALLY APPLIED

**ELECTRIC**FIELD TO A LIGHT BEAM SELF- ACTION IN A LITHIUM NIOBATE WAVEGUIDE E . Smirnov , V . Shandarov

State University of Control Systems and Radioelectronics 40 Lenin Ave . , Tomsk

...

Page 155

mos ( 1 ) where a is the amplitude of the

coordinate normalized ; xo is the initial width of the beam ; Z = z / Lp is the

propagation distance normalized ; Lp = kxă is the diffraction length

corresponding to ...

mos ( 1 ) where a is the amplitude of the

**electric**field , X = x / xo is the transversalcoordinate normalized ; xo is the initial width of the beam ; Z = z / Lp is the

propagation distance normalized ; Lp = kxă is the diffraction length

corresponding to ...

Page 162

Ia , b consisting of finite number airdielectric layers or air - dielectric - Ga periods ,

repeated periodically along the x - axes . For the simplicity we consider the case

of normal incidence . The transformation of

Ia , b consisting of finite number airdielectric layers or air - dielectric - Ga periods ,

repeated periodically along the x - axes . For the simplicity we consider the case

of normal incidence . The transformation of

**electric**and magnetic field vectors ...### What people are saying - Write a review

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### Contents

LFNM Plenary Sessions | 7 |

Transformation of the Polarization Distribution in the CrossSection of Light Beam by Self | 18 |

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

Copyright | |

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active allows amplifiers amplitude analysis angle application approximation band beam calculated carrier cavity characteristics coefficient complex components computational considered constant core corresponding decreases 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 IEEE incidence increase initial intensity interaction laser layers length light losses material matrix measurements medium method mode modulation nonlinear normal numerical observed obtained operation optical output parameters pattern periodic phase 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 vector wave waveguide wavelength width