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Polarization separated Zeeman spectra from magnetic dipole transitions in highly charged argon in the large helical device

机译:极化将大型螺旋装置中高电荷氩气中的磁偶极跃迁与塞曼光谱分开

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Visible spectral emission lines from magnetic dipole transitions in Ar X, Ar XI, Ar XIV, and Ar XV are observed from plasmas heated with neutral-beam injection (NBI) in the Large Helical Device [O. Motojima , Phys. Plasmas 6, 1843 (1999)]. Orthogonal linearly polarized components of the emission line profiles are observed with a polarization separation optical system and high-resolution spectrometer. Zeeman split profiles reveal polarization characteristics of magnetic dipole transitions. Ion temperatures and emission locations are estimated from the profiles with the magnetic field information on the lines of sight (LOS). The spatially resolved emissions are observed by the array of absolutely calibrated views. The time histories of line profiles and emission intensities at the poloidal view are presented. The observed line profiles and the intensity distribution at the poloidal view indicate the localization of these charge states in the edge region just inside the last closed flux surface. The emission line of Ar X in the tangential observation indicates Doppler shifts of the Zeeman split profiles. The velocity components of Ar X ion flow along the LOS at the tangential view are 7.7 and 2.0 km/s at the outer and inner edge plasmas, respectively, in the opposite direction to the NBI. (c) 2007 American Institute of Physics.
机译:在大型螺旋装置中从中性束注入(NBI)加热的等离子体中观察到了Ar X,Ar XI,Ar XIV和Ar XV中的磁偶极跃迁的可见光谱发射线[O.本岛物理学Plasmas 6,1843(1999)]。用偏振分离光学系统和高分辨率光谱仪观察发射线轮廓的正交线性偏振分量。塞曼分裂剖面揭示了磁偶极跃迁的极化特性。根据轮廓以及视线(LOS)上的磁场信息估算离子温度和发射位置。通过绝对校准的阵列观察空间分辨的发射。给出了线形轮廓和发射强度在时空观的时间历史。所观察到的线轮廓和在极向视图处的强度分布表明这些电荷状态位于最后一个封闭通量表面内的边缘区域中。切线观察中Ar X的发射线表示塞曼分裂剖面的多普勒频移。沿切线视图沿LOS的Ar X离子流动的速度分量在外和内边缘等离子体处分别与NBI相反,分别为7.7和2.0 km / s。 (c)2007年美国物理研究所。

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