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Faraday Rotation Dispersion Microscopy Imaging of Diamagnetic and Chiral Liquids with Pulsed Magnetic Field

机译:脉冲磁场对反磁性和手性液体的法拉第旋转弥散显微镜成像

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We have constructed an experimental setup for Faraday rotation dispersion imaging and demonstrated the performance of a novel imaging principle. By using a pulsed magnetic field and a polarized light synchronized to the magnetic field, quantitative Faraday rotation images of diamagnetic organic liquids in glass capillaries were observed. Nonaromatic hydrocarbons, benzene derivatives, and naphthalene derivatives were clearly distinguished by the Faraday rotation images due to the difference in Verdet constants. From the wavelength dispersion of the Faraday rotation images in the visible region, it was found that the resonance wavelength in the UV region, which was estimated based on the Faraday B-term, could be used as characteristic parameters for the imaging of the liquids. Furthermore, simultaneous acquisition of Faraday rotation image and natural optical rotation image was demonstrated for chiral organic liquids.
机译:我们为法拉第旋转色散成像构建了一个实验装置,并演示了新型成像原理的性能。通过使用脉冲磁场和与磁场同步的偏振光,可以观察到玻璃毛细管中反磁性有机液体的法拉第旋转定量图像。由于Verdet常数的差异,法拉第旋转图像可清楚地区分非芳族烃,苯衍生物和萘衍生物。从可见光区域中的法拉第旋转图像的波长色散,发现基于法拉第B项估计的UV区域中的共振波长可以用作液体成像的特征参数。此外,证明了手性有机液体同时获得法拉第旋转图像和自然旋光图像。

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