## Proceedings of LFNM'...: International Workshop on Laser and Fiber-optical Networks Modeling, Volume 4Kharkiv State University of Radio Electronics, 2002 - Fiber optics |

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Page 58

With rising of electronic temperature T , 2 2eV , it is seen a high degree rise of a

increases ionization processes is observed . Presence of neutral atoms interferes

with a ...

With rising of electronic temperature T , 2 2eV , it is seen a high degree rise of a

**space**charge concentration in the centre of a tube which is connected toincreases ionization processes is observed . Presence of neutral atoms interferes

with a ...

Page 62

The edge precise location between quasi - neutral plasma and a sheath of a

thickness of the wall sheath the various substantiations which not always can be

applied ...

The edge precise location between quasi - neutral plasma and a sheath of a

**space**positive charge ( a double layer ) is not certainly . For an estimation ofthickness of the wall sheath the various substantiations which not always can be

applied ...

Page 171

The scattered field can be expressed as sum of

y , z ) = a , cos ( axt + k , y - k , z ) + Źlammfum ( t , y , z ) - bum ham ( 1 , y , z ) ] . ( 3

) m = -M n = 1 Each harmonic rigorously satisfies the wave equation k ?

The scattered field can be expressed as sum of

**space**- time harmonics M N H ( t ,y , z ) = a , cos ( axt + k , y - k , z ) + Źlammfum ( t , y , z ) - bum ham ( 1 , y , z ) ] . ( 3

) m = -M n = 1 Each harmonic rigorously satisfies the wave equation k ?

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### Contents

INV L1 NEW CONCEPT OF MULTIPASS RESONATORS FOR GAS AND | 1 |

L2 WIDEAPERTURE ELECTRODISCHARGE EXCIMER LASERS | 8 |

L4 POSSIBILITY OF HIGHFREQUENCY PULSE DISCHARGE | 17 |

Copyright | |

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absorption active allows amplitude angle applied axis beam calculated carried characteristics charge coefficient components considered constant corresponds crystals defined density dependence described determined devices diffraction direction discharge distribution effective electric electrons elements energy equal equation experimental expression factor fiber field frequency function gain given gratings IEEE increase intensity interaction Kharkov laser layer length light linear means measured medium method mirror mode modulation necessary nonlinear observed obtained operator optical output parameters particles periodic phase photonic physical plane polarization positive possible presented problem processes propagation properties pulse pumping quantum radiation range received References reflection refractive resonator scattering shown shows signal solution space spatial spectral structure surface temperature tion transformation Ukraine University vector volume vortex wave waveguide wavelength