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Propagation of electromagnetic waves in a regular waveguide with multiperiodically modulated media

机译:多周期调制介质在规则波导中电磁波的传播

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The propagation of signal electromagnetic wave in a regular waveguide of arbitrary cross-section is discussed. It is assumed that the axis of the waveguide coincides with the OZ axis of some Cartesian coordinate system and the dielectric filling of the waveguide is modulated in the space (on Z coordinate) according to the multiperiodic law. The wave equations for the longitudinal components of the electric vector (Ez(x,y,Z,t)) and of the magnetic vector (Hz (x,y,Z,t)), which describe the transverse-magnetic(TM) and transverse-electric (TE) fields in the waveguide, is received. They represent differential equations of the second order in partial derivatives with periodic coefficients. The solution of the wave equations in an assumption of small indexes of modulation of filling (m≪1, m≪1, m≪1) leads to the analytical expressions for TM and TE fields in the waveguide in the region of "weak" (not resonance) interaction between the signal wave and the modulation wave. From the obtained expressions follows that TE and TM fields are a superposition of waves that have different amplitudes.
机译:讨论了信号电磁波在任意横截面的规则波导中的传播。假设波导的轴与某些笛卡尔坐标系的OZ轴重合,并且根据多周期定律在空间中(在Z坐标上)调制波导的介电填充。电矢量(E z (x,y, Z ,t))和磁矢量(H z < / sub>(x,y, Z ,t)),它描述了波导中的横向磁场(TM)和横向电场(TE)。它们代表具有周期系数的偏导数的二阶微分方程。假设填充系数调制较小的波动方程(m ≪1,m ≪1,m ≪1)导致了信号波与调制波之间“弱”(非共振)相互作用区域中波导中TM和TE场的解析表达式。从获得的表达式可以得出,TE和TM场是具有不同幅度的波的叠加。

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