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Nonadditivity of Poynting vector within opaque media

机译:不透明介质中Poynting向量的不加性

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摘要

The energy flux within an opaque medium near an interface is not the sum of an incident plus a reflected term, as there is a synergistic contribution to the time-averaged Poynting vector that involves simultaneously both the incident and reflected fields. Therefore, the well-known formula R + T velence 1, where R is the reflectance and T the transmittance, does not hold, and furthermore, R and T lose their accepted meanings. We illustrate the perils of assuming energy flux additivity by calculating the transmission and reflection spectrum of a film over a substrate normally illuminated by incoherent light at frequencies in the neighborhood of an optical resonance. We also show that the usual relation between the scattering, absorption, and extinction cross sections for particles immersed within a dissipative host have to be modified to account for the nonadditivity.
机译:界面附近的不透明介质中的能量通量不是入射事件加上反射项的总和,因为对时间平均Poynting向量有协同作用,该向量同时涉及入射场和反射场。因此,众所周知的公式R + T velence 1不成立,其中R是反射率,T是透射率,并且R和T失去了它们的公认含义。我们通过计算通常在光学共振附近的频率上被非相干光照射的基板上的薄膜的透射光谱和反射光谱来说明假设能量通量加和的危险。我们还表明,必须对浸没在耗散主体中的粒子的散射,吸收和消光截面之间的通常关系进行修改,以解决不加性问题。

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