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Terahertz imaging system using high-Tc superconducting oscillation devices

机译:使用高Tc超导振荡装置的太赫兹成像系统

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摘要

Microwatt power oscillation devices at sub-terahertz frequency region between 0.3 and 1.0 terahertz(THz) were fabricated from high-Tc superconducting single crystalline Bi2Sr2CaCu2O8þd and used asa source of the transmission terahertz imaging system. As test examples, terahertz images of coinsand a razor blade placed inside the brownish paper envelopes with the spatial resolution of 1mm arepresented. The signal-to-noise ratio exceeds 130 in these images. Using a simple wedge-shapedinterferometer and analysing the interference fringe pattern, the wavelength of the terahertz wave iscalibrated within 0.1% accuracy. This interferometer also provides a simple method to measure theabsorption coefficient of the liquid sample. Two test measurements for distilled water and ethanol aredemonstrated and their absorption coefficients are obtained with 99.2% accuracy. This suggests thatour terahertz imaging system can be applied to many practical applications, such as biological andbiomedical imaging, environmental monitoring, microanalysis of impurities, structure and dynamicalanalyses of large molecules and ions in solution.
机译:由高Tc超导单晶Bi2Sr2CaCu2O8 singled制成的亚太赫兹频率范围在0.3至1.0太赫兹(THz)之间的微瓦功率振荡器件,并用作传输太赫兹成像系统的源。作为测试示例,显示了硬币的太赫兹图像和放置在褐色纸信封中的剃须刀,其空间分辨率为1mm。这些图像中的信噪比超过130。使用简单的楔形干涉仪并分析干涉条纹图案,可将太赫兹波的波长校准在0.1%的精度范围内。该干涉仪还提供了一种简单的方法来测量液体样品的吸收系数。演示了蒸馏水和乙醇的两种测试方法,其吸收系数的准确度为99.2%。这表明我们的太赫兹成像系统可以应用于许多实际应用,例如生物和生物医学成像,环境监测,杂质的微量分析,溶液中大分子和离子的结构和动力学分析。

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