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Sensors for Photoemission Temperature Measurements

机译:用于光电温度测量的传感器

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摘要

The characteristics of four different photomultiplier tubes (PMTs) that can be used for photoemission spectroscopy analysis of radiation and, in particular, for temperature measurements, are presented. The integral color temperature is determined by the ratio of two responses of a photoemissive device, which correspond to the entire photoelectron flux from the spectral sensitivity region of the photocathode, and by the current limited by the decelerating field or separated by the energy in the field of an electrostatic lens. The modulation of the electron beam instead of the light beam with a frequency of up to 1 MHz makes it possible to obtain a time resolution of 1 mu s in a temperature measurement. The method error due to emissive capacity is similar to 0.3% for most materials in the temperature range of 1200-3300 K, which is much smaller than the error in measuring the brightness or color temperature. The instrumental error depends on the design of the electron-optical system of the entrance chamber in a PMT and on the layout of data acquisition and processing and may be 2-6%. The conversion parameter is (2-15) x 10(-3) K-1. The described PMTs can be used to measure the temperature dynamics in fast high-temperature processes.
机译:提供了可用于辐射光谱分析的四种不同光电倍增管(PMT)的特性,特别是用于温度测量。积分色温由光发性装置的两个响应的比率确定,这对应于来自光电阴极的光谱灵敏度区域的整个光电子通量,以及由减速场的电流限制或通过现场的能量分离静电镜片。电子束代替具有高达1MHz的频率的光束的调制使得可以在温度测量中获得1μs的时间分辨率。由于1200-3300克的温度范围内的大多数材料,由于发光容量导致的方法错误与测量亮度或色温的误差远小得多。乐器误差取决于PMT中入口室的电子光学系统的设计以及数据采集和处理的布局,并且可以是2-6%。转换参数是(2-15)×10(-3)k-1。所描述的PMT可用于测量快速高温过程中的温度动态。

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