High-temperature millimeter-wave dielectric measurements by free-space techniques

W. Ho
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Abstract

Experimental measurement techniques have been developed for utilizing spot-focusing and collimating lens antennas to determine the millimeter-wave dielectric properties of planar samples over the frequency range 30–140 GHz at temperatures up to 1600°C. The method is suitable for studying the average bulk-sample dielectric properties as well as inhomogeneities on the dimensional scale of a wavelength. Other significant advantages of the method include: thermal isolation of the sample from the measurement apparatus, minimum sample preparation requirements, and convenience for screening a large number of samples in relatively short time periods. The measurement apparatus has been used to study a wide variety of materials, which has led to successful models for explaining the observed temperature dependence of the dielectric properties of polycrystalline ceramics.
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利用自由空间技术测量高温毫米波介质
利用点聚焦和准直透镜天线的实验测量技术已经被开发出来,以确定平面样品在温度高达1600°C的情况下,在30-140 GHz频率范围内的毫米波介电特性。该方法适用于在波长尺度上研究平均体样介电特性和非均匀性。该方法的其他显著优点包括:样品与测量仪器的热隔离,样品制备要求最低,便于在相对较短的时间内筛选大量样品。该测量仪器已被用于研究各种各样的材料,这导致了成功的模型来解释观察到的多晶陶瓷介电性能的温度依赖性。
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A 3mm heterodyne imaging array Final design and initial operation of a high peak power x-band gyroklystron High-temperature millimeter-wave dielectric measurements by free-space techniques Modulation of an intense beam by an external microwave source in the non-linear regime — theory and simulation 85 GHz te1,3 phase-locked gyroklystron oscillator experiment
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