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基于阿基米德纳米针孔阵列的圆偏振分析仪。

Circular polarization analyzer based on an Archimedean nano-pinholes array.

作者信息

Zhang Jingran, Guo Zhongyi, Zhou Keya, Ran Lingling, Zhu Lie, Wang Wei, Sun Yongxuan, Shen Fei, Gao Jun, Liu Shutian

出版信息

Opt Express. 2015 Nov 16;23(23):30523-31. doi: 10.1364/OE.23.030523.

Abstract

A relative broadband circular polarization analyzer based on a single-turn Archimedean nano-pinholes array has been proposed and investigated systematically from visible spectrum to near infrared region. The spiral arrangement of circular nano-pinholes can implement spatially separated fields according to the relationship between the spiral direction of Archimedean structure and chirality of circularly polarized light (CPL). The enhanced-characteristics mechanisms of the single-turn spirally arranged Archimedean pinholes array have been deduced and investigated by the theoretical analysis and numerical simulation in detail. Different from the single operating wavelength of the spiral slit structure, this novel design also shows a relative wide range of the operating wavelengths in the focusing and defocusing effects. The new proposed circular polarization analyzer could find more extensive applications, such as analyzing the physiological properties of chiral molecules based on circular polarizations, full Stokes-parameter polarimetric imaging applications and so on.

摘要

一种基于单圈阿基米德纳米针孔阵列的相对宽带圆偏振分析仪已被提出,并在从可见光谱到近红外区域进行了系统研究。圆形纳米针孔的螺旋排列可以根据阿基米德结构的螺旋方向与圆偏振光(CPL)的手性之间的关系实现空间分离的场。通过理论分析和数值模拟详细推导和研究了单圈螺旋排列的阿基米德针孔阵列的增强特性机制。与螺旋狭缝结构的单一工作波长不同,这种新颖的设计在聚焦和散焦效应中也显示出相对较宽的工作波长范围。新提出的圆偏振分析仪可以找到更广泛的应用,例如基于圆偏振分析手性分子的生理特性、全斯托克斯参数偏振成像应用等。

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