利用有机溶剂膨胀在 PDMS 中引入光学非线性

Optics Pub Date : 2024-02-15 DOI:10.3390/opt5010005
S. R. Bongu, Maximilian Buchmüller, Daniel Neumaier, Patrick Görrn
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引用次数: 0

摘要

研究了利用有机溶剂溶胀在聚二甲基硅氧烷(PDMS)中引入光学非线性的可行性。研究表征了单独材料以及溶胀后的 PDMS/溶剂复合物的三阶非线性折射和吸收特性。在波长为 532 nm 的皮秒脉冲激光激发下,利用成熟的 Z 扫描技术表征了非线性特性。这些实验包括对硝基苯、2,6-联苯胺和甲苯等有机溶剂的研究,它们都具有固有的光学非线性。我们的研究表明,硝基苯是最著名的非线性光学材料之一,但由于其在 PDMS 中的膨胀效应有限,且具有相对较高的(非)线性吸收率,因此在这种情况下被证明不是最佳选择,这导致了不良的热效应和复合材料中潜在的光诱导损伤。与硝基苯相比,甲苯和 2,6-丁烷不仅吸收率较低,而且在 PDMS 中的溶胀效应更为明显。甲苯的加入导致 PDMS 的重量变化高达 116%,从而产生了巨大的非线性光学效应,PDMS/甲苯复合材料的非线性折射率 n2=3.1×10-15 cm2/W。
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Introducing Optical Nonlinearity in PDMS Using Organic Solvent Swelling
The feasibility of introducing optical nonlinearity in poly-dimethyl siloxane (PDMS) using organic solvent swelling was investigated. The third-order nonlinear refraction and absorption properties of the individual materials, as well as the PDMS/solvent compounds after swelling were characterized. The well-established Z-scan technique served as characterization method for the nonlinear properties under picosecond pulsed laser excitation at a 532 nm wavelength. These experiments included investigations on the organic solvents nitrobenzene, 2,6-lutidine, and toluene, which showed inherent optical nonlinearity. We showed that nitrobenzene, one of the most well-known nonlinear optical materials, has proven suboptimal in this context due to its limited swelling effect in PDMS and comparatively high (non)linear absorption, resulting in undesirable thermal effects and potential photo-induced damage in the composite material. Toluene and 2,6-lutidine not only exhibited lower absorption compared to nitrobenzene but also show a more pronounced swelling effect in PDMS. The incorporation of toluene caused a weight change of up to 116% of PDMS, resulting in substantial nonlinear optical effects, reflected in the nonlinear refractive index of the PDMS/toluene composite n2=3.1×10−15 cm2/W.
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