Perla Siva R, Azzam R M A
Department of Electrical Engineering, University of New Orleans, Louisiana 70148, USA.
Appl Opt. 2007 Jul 20;46(21):4604-12. doi: 10.1364/ao.46.004604.
A centrosymmetric multilayer stack of two transparent thin-film materials, which is embedded in a high-index prism, is designed to function as an efficient polarizer or polarizing beam splitter (PBS) under conditions of frustrated total internal reflection over an extended range of incidence angles. The S(LH)(k)LHL(HL)(k)S multilayer structure consists of a high-index center layer H sandwiched between two identical low-index films L and high-index-low-index bilayers repeated (k times) on both sides of the central trilayer maintaining the symmetry of the entire stack. For a given set of refractive indices, all possible solutions for the thicknesses of the layers that suppress the reflection of p-polarized light at a specified angle, and the associated reflectance of the system for the orthogonal s polarization, are determined. The angular and spectral sensitivities of polarizing multilayer stacks employing 3, 7, 11, 15, and 19 layers of BaF(2) and PbTe thin films embedded in a ZnS prism, operating at lambda=10.6 microm, are presented. The 15- and 19-layer stack designs achieve extinction ratios (ER) >30 dB in both reflection and transmission over a 46 degrees -56 degrees field of view inside the prism. Spectral analysis reveals additional discrete polarizing wavelengths other than the design wavelength (lambda=10.6 microm). The 11-, 15-, and 19-layer designs function as effective s-reflection polarizers (|R(s)|(2)>99%) over a 2-3 microm bandwidth. The effect of decreasing the refractive index contrast between the H and L layers on the resulting ER is also considered.
一种由两种透明薄膜材料组成的中心对称多层堆叠结构,嵌入高折射率棱镜中,设计用于在扩展的入射角范围内,在受抑全内反射条件下用作高效偏振器或偏振分束器(PBS)。S(LH)(k)LHL(HL)(k)S多层结构由一个高折射率中心层H夹在两个相同的低折射率薄膜L之间组成,并且在中心三层的两侧重复(k次)高折射率-低折射率双层结构,以保持整个堆叠结构的对称性。对于给定的一组折射率,确定了抑制特定角度下p偏振光反射的各层厚度的所有可能解,以及系统对正交s偏振的相关反射率。给出了采用嵌入ZnS棱镜中的3、7、11、15和19层BaF(2)和PbTe薄膜、在λ = 10.6微米下工作的偏振多层堆叠结构的角度和光谱灵敏度。15层和19层堆叠设计在棱镜内部46°-56°的视场内,反射和透射的消光比(ER)均大于30 dB。光谱分析揭示了除设计波长(λ = 10.6微米)之外的其他离散偏振波长。11层、15层和19层设计在2-3微米带宽内用作有效的s反射偏振器(|R(s)|(2)>99%)。还考虑了降低H层和L层之间折射率对比度对所得消光比的影响。