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This book provides the analytical theory of complex systems
composed of a large number of high-Q dielectric resonators.
Spherical and cylindrical dielectric resonators with inferior and
also whispering gallery oscillations allocated in various lattices
are considered. A new approach to S-matrix parameter calculations
based on perturbation theory of Maxwell equations, developed for a
number of high-Q dielectric bodies, is introduced. All physical
relationships are obtained in analytical form and are suitable for
further computations. Essential attention is given to a new unified
formalism of the description of scattering processes. The general
scattering task for coupled eigen oscillations of the whole system
of dielectric resonators is described. The equations for the
expansion coefficients are explained in an applicable way. The
temporal Green functions for the dielectric resonator are
presented. The scattering process of short pulses in dielectric
filter structures, dielectric antennas and lattices of dielectric
resonators is discussed.
This book provides the analytical theory of complex systems
composed of a large number of high-Q dielectric resonators.
Spherical and cylindrical dielectric resonators with inferior and
also whispering gallery oscillations allocated in various lattices
are considered. A new approach to S-matrix parameter calculations
based on perturbation theory of Maxwell equations, developed for a
number of high-Q dielectric bodies, is introduced. All physical
relationships are obtained in analytical form and are suitable for
further computations. Essential attention is given to a new unified
formalism of the description of scattering processes. The general
scattering task for coupled eigen oscillations of the whole system
of dielectric resonators is described. The equations for the
expansion coefficients are explained in an applicable way. The
temporal Green functions for the dielectric resonator are
presented. The scattering process of short pulses in dielectric
filter structures, dielectric antennas and lattices of dielectric
resonators is discussed.
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