温度控制和稳定在0.5 - 300k的低温介电计

V. Derkach, R. Golovashchenko, N. K. Zaetz, V. Korzh, A. S. Plevako, S. Tarapov
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摘要

为了满足毫米波低损耗材料介电参数研究设备设计的要求,高精度的温度稳定与测量就显得十分必要。尽管这个任务已经得到了大量的关注[1,2],但由于每个给定的测量复合体都具有许多特定的特征,因此它仍然是实际的。用于测量低温和极低温的温度计,通常使用基础物质的某些物理性质对温度的依赖性。已知有相当多的温度控制器[3-6],它们能够在很宽的温度范围内工作。然而,其中一些工作在直流直流模式[4],而另一些则使用交流模式,其工作温度范围太窄,≈1 K[3,6]。此外,它们只能使用一种传感器,并且在我们看来,对于温度稳定来说,反馈方案过于复杂[5]。本文研究了具有正负电阻温度系数(TCR)的两个温度传感器的温度调节器-稳定器方案。它设计用于在温度范围0.5-300 K的低温电介质计“TORNADO”上进行低温测量。并给出了利用所设计的装置进行低温辐射光谱实验的结果。
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Temperature control and stabilization in the cryodielectrometer for temperatures 0.5 – 300 K
To meet requirements, which arise while design of equipment for research the dielectric parameters of low-loss materials in the millimeter waveband, the necessity of high-precision temperature stabilization and measurement appear. Despite the fact that a lot of attention [1,2] is devoted to this task already, it reminds still actual, due to a plenty of specific features, which each given measuring complex possess.Thermometers intended to measure low and very low temperatures, as a rule use the temperature dependence of certain physical properties of basis substances. There is known quite large amount of temperature controllers [3-6], which are able to operate in a wide temperature range. However, some of them operate in direct current DC-mode [4], and others, which are used AC-mode, intended for operation in too narrow temperature range ≈ 1 K [3, 6]. Besides, they are able to use only one type of sensor and possess, in our opinion, too complicated feedback scheme for the temperature stabilization [5]. In this paper we consider the scheme of the temperature regulator-stabilizer with two temperature sensors having both positive and negative temperature coefficients of resistance (TCR). It designed for low temperature measurements on the cryodielectrometer “TORNADO” in the temperature range 0.5-300 K. As well results of the low-temperature radiospectroscopy experiment using the device designed are given.
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