利用静止和沿任意方向运动坐标系间的Lorentz变换矩阵,以及运动分层介质界面上的边界条件、电磁场的状态方程和本构关系,推导平面波入射下多层介质沿任意方向运动时电磁波的广义传播特征.分析沿某一坐标方向运动多层介质电磁波的矩阵传递关系,并将这种传播关系退化到半空间分层介质界面沿任意方向,或且当多层介质运动速度为零时,其传播特征被证明是沿任意方向运动介质界面电磁场量广义传播特征的一种特殊形式.
By using Lorentz transformations between static and moving coordinates,boundary conditions of the interface of the layered medium,and state equation and constitutive relations of electromagnetic fields,the generalized propagation characteristics of planar electromagnetic wave incident upon the multiple-layered medium moving in arbitrary direction was derived in detail. The matrix transfer relation of electromagnetic wave on the multiple-layered moving in the direction of a coordinate axis was analyzed and this transfer relation was degenerated onto a half-space layered medium interface in an arbitrary direction.If the speed of the moving layered medium was equal to zero,its propagation characteristics was verified to be a special form of the generalized propagation characteristics of electromagnetic field on a moving medium interface in an arbitrary direction.