Makhlouka Yassine, Sanaâ Fadhel, Gharbia Mohamed
Laboratoire de Physique des Liquides et d'Optique Non Linéaire, Département de Physique, Faculté des Sciences de Tunis, Université de Tunis El Manar, Tunis 1068, Tunisia.
Département de Physique-Chimie, Bizerte Preparatory College for Engineering Studies (IPEIB), Carthage University, Amilcar 1054, Tunisia.
Polymers (Basel). 2022 Apr 28;14(9):1805. doi: 10.3390/polym14091805.
A new spectrophotometric technique for the determination of both ordinary and extraordinary complex refractive indices (CRIs) of a stretched polyethylene terephthalate (Mylar) film is proposed. The sample was placed between two identical polarizers, and the transmission spectra of two different configurations (incident polarization parallel and perpendicular to the Mylar film optical axis) were recorded. Ordinary and extraordinary complex refractive indices are then extracted by fitting the experimental spectra with a theoretical model that we had elaborated in advance. A new formula for transmittance dispersion, based on the Fresnel's coefficients formalism and using the Cauchy model, was derived to describe and wavelength dependence. The suggested theoretical model succeeded in reproducing the Mylar transmission spectra across the entire visible spectral range (400, 750 nm) for both configurations, and the retrieved dispersion curves of the refractive indices, extinction coefficients, and the birefringence are comparable to results found in the literature. The proposed method is fast, straightforward, easy to set up, and cost-effective. It proved to be an excellent alternative to more conventional methods such as spectroscopic ellipsometry.
提出了一种用于测定拉伸聚对苯二甲酸乙二酯(聚酯薄膜)普通和非常复折射率的新分光光度技术。将样品置于两个相同的偏振器之间,并记录两种不同配置(入射偏振平行和垂直于聚酯薄膜光轴)的透射光谱。然后通过将实验光谱与我们预先精心构建的理论模型进行拟合,提取普通和非常复折射率。基于菲涅耳系数形式并使用柯西模型,推导了一个用于描述透射率色散及其波长依赖性的新公式。所提出的理论模型成功地再现了两种配置下聚酯薄膜在整个可见光谱范围(400 - 750 nm)的透射光谱,并且所检索到的折射率、消光系数和双折射的色散曲线与文献中的结果相当。该方法快速、直接、易于设置且具有成本效益。事实证明,它是诸如光谱椭偏仪等更传统方法的绝佳替代方法。