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Lower hybrid wave propagation in tokamaks in weak and strong absorption regimes

机译:在弱和强大的吸收制度中较低的混合波传播托卡马克斯

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Lower hybrid (LH) waves have the attractive property of damping strongly via electron Landau resonance on relatively fast tail electrons at (2.5 - 3)X v_(te), where v_(te) velence (2T_(e)/m_(e))~(1/2). The velocity at which damping occurs depends on the non-linear balance between quasilinear diffusion and collisions. For high efficiency current drive, a low parallel index of refraction, n_(||), corresponding to a high phase velocity, is chosen. Depending on the plasma electron temperature this may put the wave propagation in a multi-pass regime. In cases of low parallel refractive index, ray tracing with no SOL has been shown to have differences with experiment [1] and collision effects in the scrape off layer may be important [2]. Using a coupled model of the full wave code, TORLH[3], and the Fokker-Planck code, CQL3D[4], the importance of full wave effects in weak and strong absorption regimes are studied.
机译:下杂交(LH)波具有在(2.5 - 3)X V_(TE)的相对快速的尾电子上通过电子Landau共振强烈阻尼的有吸引性的性质,其中V_(TE)柔滑杆(2T_(e)/ m_(e) )〜(1/2)。发生阻尼的速度取决于准线性扩散和碰撞之间的非线性平衡。选择高效率电流驱动,选择对应于高相速度的低平行折射率,N_(||),对应于高相速度。根据等离子体电子温度,这可以将波传播放在多通物中。在低平行折射率的情况下,没有溶胶的射线跟踪已经显示出与实验[1]的差异,并且刮擦层中的碰撞效果可能是重要的[2]。使用全波代码的耦合模型,TorlH [3]和Fokker-Planck代码,CQL3D [4],研究了弱和强吸收制度的全波效应的重要性。

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