Propagation of peculiar heterogeneous waves

J. Billard
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引用次数: 2

Abstract

Waves whose amplitudes become null at infinity are searched. The problem is reduced to the research of solutions of a two partial derivatives equations system. For the cartesian components of fields it proceeds the orthogonality condition of the isophase and the equiamplitude surfaces and the conditions of equality between the wave vector modulus and the propagation constant of the medium. The waves, the longitudinal components, isophases and equiamplitudes of which, have the same revolving axis, are studied in the case where the phase is proportional to the course. The waves, the equiamplitudes of which are orthogonal to plane isophases, have a constant in the whole space wave vector. More, if, the equiamplitudes are plane the solution are the plane and uniform heterogeneous waves (the plane and homogeneous waves are a peculiar case). If the cylindrical components, equiamplitudes are circular cylinders and if their isophases are plane, there are solutions with finite amplitude everywhere and null amplitude in any direction except the one of the propagation. They give a representation of a parellel light beam. A method to elaborate such a beam is suggested. Two of those beams, of the same frequency, which follow the same way, conduct to the interferences specifical to heterogeneous waves.
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特殊非均质波的传播
搜索振幅在无穷远处变为零的波。该问题被简化为研究一类二阶偏导数方程组的解。对于场的笛卡儿分量,提出了等相面和等幅面正交的条件,以及波矢量模量与介质传播常数相等的条件。本文研究了具有同一旋转轴的波的纵向分量、等相和等幅,在相位与航向成正比的情况下。这些波的等幅与平面等相正交,在整个空间波矢量中有一个常数。此外,如果等振幅是平面的,则解是平面和均匀的非均匀波(平面波和均匀波是一种特殊情况)。如果圆柱分量的等幅是圆柱体,如果它们的等相是平面,那么除了传播方向外,在任何方向上都有有限振幅和零振幅的解。它们给出了平行光束的表示。提出了一种制作这种梁的方法。其中两个具有相同频率的波束,以相同的方式传导到非均质波特有的干扰。
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