首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Emittance and absorptance tailoring by negative refractive index metamaterial-based Cantor multilayers
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Emittance and absorptance tailoring by negative refractive index metamaterial-based Cantor multilayers

机译:负折射率基于超材料的Cantor多层膜对发射率和吸收率的调整

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We investigated electromagnetic wave propagation through one-dimensional stacks of alternating positive and negative refractive index layers arranged as truncated quasi-periodic (fractal) Cantor multilayers. We considered the occurrence of phase compensation in these structures. In our calculation we utilized the transfer matrix technique and applied the Kirchhoff's second law to calculate emittance and absorptance modification by negative index metamaterials. We took into account dispersion and absorptive losses and analysed both on-axis and off-axis radiation. We showed that Cantor structures formed by inserting negative refractive index layers as a substitution part in the multilayer lattices enable tailoring of both spectral and angular dependences of emittance/absorptance. We conclude that phase compensation could significantly extend the applicability of Cantor-type multilayers containing negative refractive index materials.
机译:我们研究了电磁波通过交替排列的正和负折射率层的一维堆栈的传播,这些正负折射率层排列为截短的准周期(分形)Cantor多层。我们考虑了在这些结构中发生相位补偿。在我们的计算中,我们使用了传递矩阵技术,并应用了基尔霍夫第二定律来计算负折射率超材料的发射率和吸收率修正值。我们考虑了色散和吸收损耗,并分析了轴上和轴外辐射。我们表明,通过在多层晶格中插入负折射率层作为替换部分而形成的Cantor结构,可以调整发射率/吸收率的光谱和角度依赖性。我们得出结论,相位补偿可以显着扩展包含负折射率材料的Cantor型多层膜的适用性。

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