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具有分子振动模式的聚合物谐振器中红外辐射的光谱和角度整形

Spectral and angular shaping of infrared radiation in a polymer resonator with molecular vibrational modes.

作者信息

Tsuda Shinichiro, Yamaguchi Shuhei, Kanamori Yoshiaki, Yugami Hiroo

出版信息

Opt Express. 2018 Mar 19;26(6):6899-6915. doi: 10.1364/OE.26.006899.

DOI:10.1364/OE.26.006899
PMID:29609377
Abstract

We present a comprehensive approach for tailoring the spectral and angular properties of infrared thermal radiation by using a polymer resonator with molecular vibrational modes, consisting of a polymer thin film on a back-reflective substrate. To precisely design the resonator, we derived the infrared dielectric function of a poly(methyl methacrylate) (PMMA) thin film from the measured reflectance spectrum by fitting it with a Gaussian-convoluted Drude-Lorentz model while accounting for the inhomogeneous broadening caused by the disordered structure of polymers. Our experimental and numerical characterization confirms that the polymer resonator exhibits spectral shaping from quasi-broadband to narrowband due to the intrinsic molecular vibrational absorption of the polymer. The frequency-isolated and strong molecular vibrational absorption of the carbonyl stretching mode at 1730 cm enables the narrowband shaping of the PMMA resonator. In addition, we confirm that the angular-shaping characteristics of this polymer resonator can be tuned, from omnidirectional to strongly angular selective, by changing its polymer film thickness. Modal dispersion analysis reveals that the angle-selectivity of the polymer resonator at an angle of incidence of 80° comes from coupling between the molecular vibrational mode and leaky mode. The proposed infrared radiation management strategy based on molecular vibrational modes of polymers is cost-effective, scalable, and works well with terrestrial matter, including organic compounds and gas molecules, showing promise for applications such as optical gas sensing and radiative thermal management.

摘要

我们提出了一种综合方法,通过使用具有分子振动模式的聚合物谐振器来调整红外热辐射的光谱和角度特性,该谐振器由背反射衬底上的聚合物薄膜组成。为了精确设计谐振器,我们通过将测量的反射光谱与高斯卷积德鲁德 - 洛伦兹模型拟合,同时考虑聚合物无序结构引起的非均匀展宽,推导出聚甲基丙烯酸甲酯(PMMA)薄膜的红外介电函数。我们的实验和数值表征证实,由于聚合物固有的分子振动吸收,聚合物谐振器呈现出从准宽带到窄带的光谱整形。羰基伸缩模式在1730 cm处的频率隔离且强烈的分子振动吸收使得PMMA谐振器能够实现窄带整形。此外,我们证实,通过改变聚合物薄膜的厚度,可以将这种聚合物谐振器的角度整形特性从全向调谐为强角度选择性。模态色散分析表明,聚合物谐振器在入射角为80°时的角度选择性来自分子振动模式与泄漏模式之间的耦合。所提出的基于聚合物分子振动模式的红外辐射管理策略具有成本效益、可扩展性强,并且与包括有机化合物和气体分子在内的地球物质配合良好,在光学气体传感和辐射热管理等应用中显示出前景。

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