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首页> 外文期刊>International Journal of Thermophysics >Design and Capabilities of the Temperature Control System for the Italian Experiment Based on Precision Laser Spectroscopy for a New Determination of the Boltzmann Constant
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Design and Capabilities of the Temperature Control System for the Italian Experiment Based on Precision Laser Spectroscopy for a New Determination of the Boltzmann Constant

机译:基于精密激光光谱的玻利兹曼常数新测定的意大利实验温度控制系统的设计和功能

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This article reports on the construction details of an isothermal cell, referenced to the triple point of water (TPW), together with characterization of its temperature uniformity and stability. The traceability of the temperature measurements is also defined and reported. The cell has an inner chamber of 15 mm diameter, and it is 150mm long. Its temperature is actively controlled and maintained stable within 0.1 mK, for an unlimited time. The temperature gradient is limited to less than one millikelvin over the length of the cell which is kept in a horizontal position. This accurate temperature control is achieved by means of a series of three vacuum chambers, one inside the other. A special heater, reflectors, standard platinum resistance thermometers, several feedthroughs, an auxiliary thermostat, specific electronics, and dedicated software are used for the active control. The device represents a mixture of cryogenic and contact thermometry techniques, and it has been designed, assembled, and characterized at the Istituto Nazionale di Ricerca Metrologica. This temperature-stabilized cell is a part of a more complex experimental setup, based on near-infrared precision laser spectroscopy, devoted to the experimental determination of the Boltzmann constant.
机译:本文报道了以水的三相点(TPW)为参考的等温电池的构造细节,以及其温度均匀性和稳定性的特征。还定义并报告了温度测量的可追溯性。电池的内腔直径为15毫米,长150毫米。它的温度受到主动控制,并在无限时间内保持稳定在0.1 mK以内。在保持在水平位置的电池的整个长度上,温度梯度被限制为小于一毫摩尔。这种精确的温度控制是通过一系列三个真空腔实现的,一个在另一个内。主动控制使用特殊的加热器,反射器,标准的铂电阻温度计,多个馈通,辅助恒温器,特定的电子设备和专用软件。该设备代表了低温测温和接触测温技术的混合,并且已经在国立赖斯卡计量学院(Istituto Nazionale di Ricerca Metrologica)进行了设计,组装和表征。这种温度稳定的电池是更复杂的实验装置的一部分,该装置基于近红外精密激光光谱学,致力于实验确定玻耳兹曼常数。

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