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一种用于太赫兹斯托克斯矢量精确映射的手持式偏振成像设备及校准技术。

A handheld polarimetric imaging device and calibration technique for accurate mapping of terahertz Stokes vectors.

作者信息

Harris Zachery B, Xu Kuangyi, Arbab M Hassan

机构信息

Biomedical Engineering Department, Stony Brook University, Stony Brook, NY, USA.

出版信息

Sci Rep. 2024 Jul 31;14(1):17714. doi: 10.1038/s41598-024-68530-4.

Abstract

In recent years, handheld and portable terahertz instruments have been in rapid development for various applications ranging from non-destructive testing to biomedical imaging and sensing. For instance, we have deployed our Portable Handheld Spectral Reflection (PHASR) Scanners for in vivo full-spectroscopic imaging of skin burns in large animal models in operating room settings. In this paper, we debut the polarimetric version of the PHASR Scanner, and describe a generalized calibration technique to map the spatial and spectral dependence of the Jones matrix of an imaging scanner across its field of view. Our design is based on placement of two orthogonal photoconductive antenna (PCA) detectors separated by a polarizing beam splitter in the PHASR Scanner housing. We show that as few as three independent measurements of a well-characterized polarimetric calibration target are sufficient to determine the polarization state of the incident beam at the sample location, as well as to extract the Jones propagation matrix from the sample location to the detectors. We have tested the accuracy of our scanner by validating polarimetric measurements obtained from a birefringent crystal rotated to various angles, as compared to the theoretically predicted response of the sample. This new version of our PHASR scanner can be used for high-speed imaging and investigation of heterogeneity of polarization-sensitive samples in the field.

摘要

近年来,手持式和便携式太赫兹仪器在从无损检测到生物医学成像与传感等各种应用中得到了快速发展。例如,我们已将便携式手持光谱反射(PHASR)扫描仪用于手术室环境下大型动物模型皮肤烧伤的体内全光谱成像。在本文中,我们首次推出了PHASR扫描仪的偏振版本,并描述了一种通用校准技术,用于绘制成像扫描仪琼斯矩阵在其视场内的空间和光谱依赖性。我们的设计基于在PHASR扫描仪外壳中放置两个由偏振分束器隔开的正交光电导天线(PCA)探测器。我们表明,对一个特征明确的偏振校准目标进行少至三次独立测量,就足以确定样品位置处入射光束的偏振态,以及从样品位置到探测器提取琼斯传播矩阵。与样品的理论预测响应相比,我们通过验证从旋转到不同角度的双折射晶体获得的偏振测量结果,测试了扫描仪的准确性。我们的这款新型PHASR扫描仪可用于现场对偏振敏感样品的高速成像和异质性研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fdf/11292021/573b5d64cfba/41598_2024_68530_Fig1_HTML.jpg

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