Rheometry experiment of an electric field sensor for plasma wave observation

T. Imachi, S. Yagitani, M. Ozaki, R. Higashi, Y. Yokoyama
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Abstract

Observation of plasma waves is an important subject of a spacecraft observation. The waveforms of electromagnetic field observed by sensors aboard a spacecraft are converted to electric voltage and is sent to the Earth as a set of digital data. Therefore, to know the exact intensity of the electromagnetic field, an accurate calibration of the sensor is required. However, it is difficult to acquire the characteristics of an electric sensor in a ground test. For observation of the electric field component of the wave, a dipole antenna using a pair of wires (a wire antenna) is often used, and since the sensitivity must be assured at frequency of several kHz or below for plasma wave observation, the total length of the wire is very large, ranging from tens of meters to 100 m. The size of wire and the difficulty of reproduction for the space plasma environment make the ground test hard.
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等离子体波观测用电场传感器流变实验
等离子体波观测是航天器观测的一个重要课题。航天器上的传感器观测到的电磁场波形被转换成电压,并以一组数字数据的形式发送到地球。因此,要知道确切的电磁场强度,就需要对传感器进行精确的校准。然而,在地面测试中很难获得电传感器的特性。为了观测波的电场分量,通常使用使用一对导线的偶极子天线(导线天线),由于等离子体波观测必须保证在几kHz或更低频率下的灵敏度,因此导线的总长度非常大,从几十米到100米不等。空间等离子体环境下导线的尺寸和再现的难度给地面试验带来了困难。
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