Proceedings of LFNM ...Institution of Electrical and Electronics Engineers, 2005 - Fiber optics |
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Page 86
... BROADENING OF QUANTUM TRANSITION LINES A.E. Dmitriev , O.M. Parshkov Saratov State Technical university 77 , Polytekhnitcheskaya ul . , 410054 Saratov , Russia e - mail : tech@mail.saratov.ru Abstract - Transient regime of common ...
... BROADENING OF QUANTUM TRANSITION LINES A.E. Dmitriev , O.M. Parshkov Saratov State Technical university 77 , Polytekhnitcheskaya ul . , 410054 Saratov , Russia e - mail : tech@mail.saratov.ru Abstract - Transient regime of common ...
Page 121
... broadening are : a ) a decreasing of laser power was accompanied by less broadening and significant increasing of lightness of the focal region image at the laser radiation frequency ; b ) the decreasing of the cell length led to ...
... broadening are : a ) a decreasing of laser power was accompanied by less broadening and significant increasing of lightness of the focal region image at the laser radiation frequency ; b ) the decreasing of the cell length led to ...
Page 288
... broadening , reduction of the peak power and jitter . Fig.2 shows a typical input and output Gaussian and super ... broadening . Pulse width at the output of fiber and the effective broadening of the pulse which is affected by PMD are ...
... broadening , reduction of the peak power and jitter . Fig.2 shows a typical input and output Gaussian and super ... broadening . Pulse width at the output of fiber and the effective broadening of the pulse which is affected by PMD are ...
Contents
LFNM Plenary | 1 |
BatteryLess Spatial Optical Communication Terminals for LocationBased Indoor | 14 |
Resonant Photoproduction of the ElectronPositron Pair with Photon Emission | 27 |
Copyright | |
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amplitude approximation bandwidth Bragg broadening calculated cavity characteristics circuit coefficient corner reflector corresponding crystal oscillator curves density dependence device dielectric diffraction dispersion distribution e-mail effect electric Electronics emission energy equation error excitation experimental field filter function Gaussian grating IEEE input intensity interaction investigated Keywords Kharkiv Kharkiv National University laser lattice layer Lett light beams linear maximum measurement medium method mode modulation National University noise nonlinear obtained optical fiber optical splitter output parameters phase phase noise photodetector photonic photonic crystal Phys piezoelectric polarization Proc propagation pulse pumping current quantum quartz radiation Raman gain range reflector refractive index region resonator sample scattering semiconductor sensor shown signal simulation solitons solution spectral structure surface temperature thickness transmission Ukraine University of Guanajuato University of Radio VCSEL voltage wave waveguide wavelength width