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Reflection and transmission in anisotropic dissipative multilayers

机译:各向异性耗散多层膜的反射和透射

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A planarly-stratified multilayer is considered with material properties depending on the Cartesian coordinate normal to the layers. Upon the assumption that the time dependence be harmonic, the equations of motion and the constitutive equations (of a viscoelastic solid) are given the form of a first-order system of ordinary differential equations. The propagator of the whole multilayer is determined and hence the reflection and transmission matrices are obtained for different boundary conditions. Next a new algorithm, which avoids some drawbacks of other procedures, is outlined. The reflection and transmission matrices of the multilayer are determined by recursive relations via the matrices, of reflection and transmission, associated with the single layers.
机译:平面分层的多层材料的材料属性取决于垂直于这些层的笛卡尔坐标。在假设时间相关性为谐波的前提下,运动方程和本构方程(粘弹性固体)以一阶常微分方程组的形式给出。确定了整个多层的传播体,因此获得了不同边界条件下的反射和透射矩阵。接下来,概述了一种新算法,该算法避免了其他过程的某些缺点。多层的反射和透射矩阵由与单层相关联的,经由反射和透射的矩阵的递归关系来确定。

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