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基于平衡电光检测的太赫兹偏振实时成像

Terahertz polarization real-time imaging based on balanced electro-optic detection.

作者信息

Wang Xinke, Cui Ye, Sun Wenfeng, Ye JiaSheng, Zhang Yan

机构信息

Department of Physics, Harbin Institute of Technology, No. 92 XiDaZhiJie, Harbin 150001, China.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2010 Nov 1;27(11):2387-93. doi: 10.1364/JOSAA.27.002387.

Abstract

A terahertz (THz) polarization real-time imaging system that can effectively reduce experimental time consumption for acquiring a sample's polarization information is achieved. An alternative THz polarization measurement method is proposed. In this method, a <110> zinc-blende crystal is used as the sensor, and the probe polarization is adjusted to detect THz electric fields on the two orthogonal polarization components. The relative sensitivity of the imaging system to the THz polarization angle is estimated to be less than 0.5°. To illustrate the ability of the system, two samples are designed and measured by using the system. From their THz polarization real-time images, each region of these samples can be precisely presented. Experimental results clearly show the special influences of different materials on the THz polarization. This work effectively extends the information content obtained by THz real-time imaging and improves the feasibility of the imaging technique.

摘要

实现了一种太赫兹(THz)偏振实时成像系统,该系统能够有效减少获取样品偏振信息时的实验时间消耗。提出了一种交替太赫兹偏振测量方法。在该方法中,使用<110>闪锌矿晶体作为传感器,并调整探测偏振以检测两个正交偏振分量上的太赫兹电场。成像系统对太赫兹偏振角的相对灵敏度估计小于0.5°。为了说明该系统的能力,设计了两个样品并使用该系统进行测量。从它们的太赫兹偏振实时图像中,可以精确呈现这些样品的每个区域。实验结果清楚地表明了不同材料对太赫兹偏振的特殊影响。这项工作有效地扩展了通过太赫兹实时成像获得的信息内容,并提高了成像技术的可行性。

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