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Optimisation of UHF reflectometer device for study of plasma density profile and fluctuation in magnetically confined plasmas

机译:UHF反射仪装置的优化研究等离子体密度曲线研究和磁带狭窄等离子体中的波动

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In the correlation reflectometry method, two microwave signals (usually of the same polarization) are launched into plasma, reflected by a cut-off layer, received and analyzed. The spatial coherence of fluctuations is studied by changing the frequency of the second microwave signal against the first one. There is a problem of separation of these two signals as their frequencies are near to each other. This problem can be removed if one uses probing signals with different frequencies but reflected from the same plasma layer. This could be done if one uses the magnetized plasma probing via microwaves with different polarization -O- and X-mode probing. In this paper we describe the results of study of plasma fluctuation properties by using dual polarization single line microwave plasma probing in the reflex discharge. Experiments were done on the pulsed reflex discharge performed in the SS-vacuum chamber (length 150 cm, diameter 20 cm) that was put inside of magnetic solenoid producing a nearly homogeneous magnetic field up to 1.2 T.
机译:在相关反射测量方法中,将两个微波信号(通常相同的偏振)发射到由截止层反射的等离子体中,接收和分析。通过将第二微波信号的频率改变对第一第一,研究了波动的空间相干性。由于它们的频率彼此靠近,存在对这两个信号的分离的问题。如果使用具有不同频率的探测信号但从相同的等离子体层反射,则可以删除该问题。如果使用具有不同偏振的微波和X模式探测的微波使用磁化等离子体探测,可以完成这一点。本文通过使用双极化单线微波等离子体探测在反射放电中描述了等离子体波动性能的研究结果。在SS - 真空室(长度为150cm,直径20cm)中进行的脉冲反射放电进行实验,该磁螺线管内部的磁螺线管内部产生几乎均匀的磁场,高达1.2吨。

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