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PROGRESS IN THE STUDY OF RF HEATING AND STABILIZATION ON HANBIT MIRROR DEVICE

机译:手持镜面装置的射频加热和稳定化研究进展

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摘要

The HANBIT device is a simple mirror-type device of which the length, radius, and magnetic field are about 5 m, 0.18 m, and 0.1-0.3 T, respectively, in the central cell. In HANBIT, two antenna systems are used for the plasma production, heating, and MHD stabilization; one is the slot antenna located near the center region with the maximum power of 500 kW and the typical frequency of 3.5 MHz, and the other DHT antenna located near the mirror throat with the maximum power of 100 kW and the frequency of 3.75 MHz. Recent experimental studies in HANBIT indicate that the slot antenna system can produce stable, high-density plasmas in apparently two different regimes; one is the fast wave regime with the ratio w/Wci~2 and the other is the slow wave regime with w < Wci, where w and Wci are the RF and ion cyclotron resonance frequencies, respectively. The possible stabilization mechanism appears to be the ponderomotive force by the fast wave in the regime of w/Wci~2, while the RF side-band coupling force by the slow wave in the regime of w < Wci. A clear excitation of the flute-type, interchange modes with the axial mode number n=0 is observed when the RF power is not enough for the stabilization, particularly, in the slow wave regime. Here, we report the results of these experimental and theoretical studies on the RF heating and stabilization processes by the slot antenna in HANBIT. In addition, we introduce briefly the results of the other on-going research works in HANBIT, which include the beach-wave ion heating experiment using DHT antenna, the pre-ionization experiment using the thermal electron cathode or ECH, and the analysis of plasma-wall interaction and neutral transport.
机译:HANBIT设备是一个简单的镜像型设备,在中央单元中其长度,半径和磁场分别约为5 m,0.18 m和0.1-0.3T。在HANBIT中,两个天线系统用于等离子体生产,加热和MHD稳定;一个是位于中心区域附近的缝隙天线,最大功率为500 kW,典型频率为3.5 MHz,另一个是DHT天线,位于镜喉附近,最大功率为100 kW,频率为3.75 MHz。 HANBIT的最新实验研究表明,缝隙天线系统可以在两种不同的情况下产生稳定的高密度等离子体。一个是比率为w / Wci〜2的快波状态,另一个是w

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