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LIGHT PROPAGATION IN IDEAL
Exact Solution of the TimeIndependent
13 other sections not shown
amplitude angle Appl assumed attenuation coefficient attenuation measurements backscattering bandwidth beam behavior characterized circuit cladding connector considered constant core diameter curve cutback technique depends detection device differential mode Differential Mode Attenuation DMD measurements domain effects Electron emission emitting employed equation evaluation fiber baseband response fiber end fiber length fiber perturbation field scanning function graded index fibers group delay index profile laser diode launching condition leaky rays Lett linear lock-in amplifier loss material dispersion maximum meridional rays method mode coupling mode scramblers modulation frequency monomode fibers noise obtained Optical Fibers optical power distribution optical source parameters performed photodetector photodiode possible preform propagation properties pulse radiance radiation refractive index relative delays scattering selection shot noise shown in Fig signal sinusoidal spatial spectrum steady-state step index fibers technique tion transmission systems transverse typical uncertainty uniform excitation variable voltage waveguide wavelength