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首页> 外文期刊>Plasma Science & Technology >High density plasma heating by EC-waves injected from the high-field side for mode conversion to electron bernstein waves in LHD
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High density plasma heating by EC-waves injected from the high-field side for mode conversion to electron bernstein waves in LHD

机译:从高场侧注入的EC波进行高密度等离子体加热,以模式转换为LHD中的电子伯恩斯坦波

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摘要

To realize an excitation of electron Bernstein waves (EBW) via mode conversion from X-mode waves injected from the high magnetic field side (HFS), new inner-vessel mirrors were installed close to a helical coil in the large helical device (LHD). 77 GHz electron cyclotron (EC) wave beams injected from an existing EC-wave injection system toward the new mirror are reflected on the mirror so that the beams are injected to plasmas from HFS. Evident increases in the electron temperature at the plasma core region and the plasma stored energy were observed by the HFS beam injection to the plasmas with the line-average electron density of 7.5×10~(19) m~(-3), which is slightly higher than the plasma cut-off density of 77 GHz EC-waves, 7.35×10 ~(19) m~(-3). The heating efficiency evaluated from the changes in the time derivative of the plasma stored energy reached ~70%. Although so far it is not clear which is the main cause of the heating effect, the mode-converted EBW or the X-mode wave itself injected from the HFS, an effective heating of high-density plasma over the plasma cut-off of EC-wave was successfully demonstrated.
机译:为了通过从高磁场侧(HFS)注入的X模波通过模转换实现电子伯恩斯坦波(EBW)的激发,在大型螺旋装置(LHD)中靠近螺旋线圈的位置安装了新的内容器镜。从现有的EC波注入系统向新反射镜注入的77 GHz电子回旋加速器(EC)光束在反射镜上反射,从而将其从HFS注入到等离子体中。通过HFS束注入等离子体的线平均电子密度为7.5×10〜(19)m〜(-3),观察到等离子体核心区电子温度明显升高,并观察到等离子体存储的能量。略高于77 GHz EC波的等离子体截止密度7.35×10〜(19)m〜(-3)。通过等离子储能时间导数的变化评估的加热效率达到〜70%。尽管到目前为止,尚不清楚哪个是加热效应的主要原因,这是从HFS注入模式转换的EBW或X模式波本身,即在EC的等离子体截止点上对高密度等离子体的有效加热-wave被成功演示。

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