Reciprocity relations for interference coatings

A. Sotsky, E. Chudakov
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Abstract

By analyzing the wave equations, the coincidence of the energy reflection and transmission coefficients for the s- and p-polarization waves is herein substantiated when they are incident on the interference coating from opposite directions. The coating can be characterized by an arbitrary spatial profile of the refractive index, the limiting condition is the absence of optical losses in it. Reciprocity relations are obtained for the energy reflection and transmission coefficients of natural light for a structure in the form of a plane-parallel dielectric plate with interference coatings on its opposite sides. It is shown that when a structure with an absorbing plate is illuminated in opposite directions, the energy reflection coefficients can differ, while the energy transmission coefficients always coincide. Reciprocity relations are applied to the calculation of broadband antireflective interference coatings consisting of alternate layers Nb2O5 and SiO2 deposited on a polycarbonate plate. As a result, their correctness is confirmed and it is shown that the optimized antireflection two-sided interference coating provides approximately a five times lower averaged energy reflection coefficient compared to the optimized one-sided coating. 
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干涉涂层的互易关系
通过对波动方程的分析,证实了s偏振波和p偏振波从相反方向入射到干涉涂层时,其能量反射系数和透射系数是符合的。该涂层的折射率具有任意的空间分布,其限制条件是不存在光学损耗。得到了具有干涉涂层的平面平行介质板结构对自然光的能量反射系数和透射系数的互易关系。结果表明,当有吸收板的结构在相反方向照射时,能量反射系数可能不同,而能量透射系数总是一致的。将互易关系应用于聚碳酸酯板上由Nb2O5和SiO2交替层组成的宽带增透干涉膜的计算。结果表明,优化后的抗反射双面干涉涂层的平均能量反射系数比优化后的单面干涉涂层低约5倍。
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CiteScore
0.40
自引率
0.00%
发文量
35
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