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Dynamic properties of almost monochromatic standing waves

机译:几乎单色的驻波的动态特性

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For a scalar field propagating at light velocity r, we show that kinematic and dynamic properties of almost monochromatic standing waves, with frequency Ω(x,t) = ω> ± δΩ(x,t), where ω is constant, and δΩ(x,t) ω, are formally identical with mechanical properties of matter. They are both described by equations with the same mathematical structure. The energy conservation stems from stability in time, while the variational principle steins from stability in space. In classical mechanics of a particle, the relativist equations correspond to the geometrical optics approximation as ω → ∞. The quantum mechanical equations correspond to the wave optics approximation, in which wave homogeneous Fourier relations are replaced by the material Heisenberg relations.
机译:对于以光速r传播的标量场,我们证明了频率为Ω(x,t)=ω>±δΩ(x,t)的几乎单色驻波的运动学和动力学特性,其中ω是常数,而δΩ( x,t)ω在形式上与物质的机械特性相同。它们都由具有相同数学结构的方程式描述。能量守恒源于时间的稳定性,而变分原理则源于空间的稳定性。在经典的粒子力学中,相对论方程对应于几何光学近似为ω→∞。量子力学方程对应于波光学近似,其中波均质傅立叶关系被材料海森堡关系代替。

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