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Photoelastic modulator non-idealities in magneto-optical polarization measurements

机译:光弹性调制器在磁光极化测量中的非理想

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Modifying and detecting the polarization of light is increasingly important in many contexts such as Faraday isolators and electro-optical modulators. In order to control the polarization of light, it is necessary to know the polarization characteristics of the materials used in the applications. To be able to (magneto-)optically characterize novel materials, we designed a setup using a single photoelastic modulator (PEM) to simultaneously detect natural and magnetic circular dichroism and circular birefringence over a large spectral range. We then theoretically analyzed and experimentally characterized the effect of non-idealities in the PEM on the setup and the resulting data. Our results demonstrate an influence of PEM non-idealities on the measured signals, resulting in non-negligible mixing of circular birefringence and circular dichroism signals. Our measurements of the wavelength dependence of these non-idealities reveal larger non-idealities towards shorter wavelengths. These results illustrate the necessity to take PEM non-idealities into account when working with PEMs, especially at shorter wavelengths or when dealing with signals spanning different orders of magnitude. PEM non-idealities, while frequently neglected in experimental setup design and theoretical derivations, are expected to be more complicated and possibly exert a larger influence on obtained results for experimental setups with multiple PEMs.
机译:在诸如法拉第隔离器和电光调制器的许多背景下,改变和检测光的极化越来越重要。为了控制光的偏振,有必要了解应用中使用的材料的偏振特性。为了能够(磁 - )光学表征新颖的材料,我们设计了使用单一光弹性调制器(PEM)的设置,以同时在大的光谱范围内检测天然和磁性圆形二色性和圆形双折射。然后理论上,我们分析和实验地表征了PEM在设置和所得到的数据中的非理想的影响。我们的结果表明PEM非理想对测量信号的影响,导致圆形双折射和圆形二色性信号的不可忽略的混合。我们对这些非理想的波长依赖性的测量揭示了较短波长的更大的非理想。这些结果说明了在使用PEM时考虑PEM非理想的必要性,尤其是在更短的波长或处理跨越不同数量级的信号时。 PEM非理想,虽然在实验设置设计和理论衍生中经常被忽略,但预计将更加复杂,并且可能对具有多个PEM的实验设置的结果产生更大的影响。

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