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The optical properties of biological tissues in the terahertz wavelength range

机译:太赫兹波长范围内生物组织的光学特性

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The terahertz (THz) region of the electromagnetic (EM) spectrum is defined as frequencies ranging from 0.1 to 10 THz. The optical properties of biological tissues have been characterized in neighboring spectral regions; however, few studies have been conducted that have examined these properties in the THz wavelength range. In this study, we used a far-infrared optically-pumped terahertz laser system, a reflection spectrometer system, and photothermal radiometric techniques to characterize the optical properties of water and biological tissues. The reflection spectrometer system performed well at lower frequencies, but proved to be unsuitable for frequencies greater than 2.52 THz. The suboptimal performance was determined to be primarily due to the higher transmission losses of the lenses, and the increased atmospheric losses that are associated with higher terahertz frequencies. The waveguide studies corroborated these findings and served to demonstrate that purging the laser beam path with nitrogen gas was an effective way to markedly reduce THz beam propagation losses. Given this finding, we have designed a temperature-controlled, nitrogen gas purged THz enclosure. The preliminary studies using photothermal radiometric techniques appeared to provide reasonable measures for the absorption coefficient (μ_a) of water at THz frequencies. In future studies, the tissue property measurements will made within the custom-designed enclosure using photothermal radiometric techniques.
机译:电磁(EM)频谱的太赫兹(THz)区域定义为范围从0.1到10 THz的频率。生物组织的光学特性已在邻近的光谱区域进行了表征。但是,很少有研究在THz波长范围内检查这些特性。在这项研究中,我们使用了远红外光泵太赫兹激光系统,反射光谱仪系统和光热辐射技术来表征水和生物组织的光学特性。反射光谱仪系统在较低频率下表现良好,但事实证明不适用于大于2.52 THz的频率。确定次优性能主要是由于镜片的更高的传输损耗以及与更高的太赫兹频率相关的增加的大气损耗。波导研究证实了这些发现,并证明了用氮气吹扫激光束路径是显着降低THz光束传播损耗的有效方法。根据这一发现,我们设计了一个温度可控,氮气吹扫的太赫兹外壳。使用光热辐射技术进行的初步研究似乎为THz频率下的水吸收系数(μ_a)提供了合理的量度。在未来的研究中,将使用光热辐射技术在定制设计的外壳内进行组织特性测量。

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