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Terahertz confocal imaging: Polarization and sectioning characteristics

机译:太赫兹共焦成像:极化和切片特性

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摘要

The development of high-resolution THz imaging systems is currently of great practical significance, (e.g. in the areas of security, agri-food, biomedicine etc.). Implementing and calibrating such systems is essential, as is the verification and appropriate use of models. Confocal microscopes are well known to improve resolution and provide 3D images. In this paper a novel terahertz (THz) confocal transmission scanning microscopy is implemented using a commercial 300 GHz (similar to 1 mm) electronic THz source and sensor array. In order to calibrate the system, two objects, a high contrast amplitude metallic object and a low contrast surface relief phase pattern, are produced. These simple samples are imaged to quantify the polarization and sectioning properties of the imaging system. A scalar model is shown to be appropriate and is shown to predict the measured lateral and axial resolutions. Experimental results using two more complex objects are then presented, confirming confocal operation. This paper details the implementation and calibration of a 3D THz confocal imaging system.
机译:高分辨率THz成像系统的发展目前具有很大的实际意义,(例如,在安全,农业食品,生物医学等领域)。实施和校准此类系统是必不可少的,验证和适当使用模型的验证。众所周知,共聚焦显微镜改善分辨率并提供3D图像。本文使用商业300 GHz(类似于1 mm)电子THZ源和传感器阵列来实现新型的Terahertz(THz)共聚焦传输扫描显微镜。为了校准系统,产生两个物体,高对比度幅度金属物体和低对比度表面浮雕相位图案。对这些简单的样本进行成像以量化成像系统的偏振和切片特性。标量模型被示出为合适,并被示出预测测量的横向和轴向分辨率。然后呈现使用两个更复杂物体的实验结果,确认共聚焦操作。本文详细介绍了3D THz共焦成像系统的实现和校准。

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