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Terahertz imaging system based on a backward-wave oscillator

机译:基于反向波振荡器的太赫兹成像系统

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摘要

We present an imaging system designed for use in the terahertz range. As the radiation source a backward-wave oscillator was chosen for its special features such as high output power, good wave-front quality, good stability, and wavelength tunability from 520 to 710 GHz. Detection is achieved with a pyroelectric sensor operated at room temperature. The alignment procedure for the optical elements is described, and several methods to reduce the etalon effect that are inherent in monochromatic sources are discussed. The terahertz spot size in the sample plane is 550 mum (nearly the diffraction limit), and the signal-to-noise ratio is 10,0001; other characteristics were also measured and are presented in detail. A number of preliminary applications are also shown that cover various areas: nondestructive real-time testing for plastic tubes and packaging seals; biological terahertz imaging of fresh, frozen, or freeze-dried samples; paraffin-embedded specimens of cancer tissue; and measurement of the absorption coefficient of water by use of a wedge-shaped cell. (C) 2004 Optical Society of America.
机译:我们介绍一种设计用于太赫兹范围的成像系统。选择反向波振荡器作为辐射源是因为其特殊的特性,例如高输出功率,良好的波阵面质量,良好的稳定性以及从520至710 GHz的波长可调性。检测是通过在室温下工作的热释电传感器实现的。描述了光学元件的对准过程,并讨论了减少单色光源固有的标准具效应的几种方法。样品平面中的太赫兹光斑尺寸为550 mum(接近衍射极限),信噪比为10,0001;还测量了其他特性,并进行了详细介绍。还显示了许多涵盖各个领域的初步应用:塑料管和包装密封件的无损实时测试;以及新鲜,冷冻或冻干样品的生物太赫兹成像;石蜡包埋的癌组织标本;使用楔形池测量水的吸收系数。 (C)2004年美国眼镜学会。

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