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The plasma physics for an early stage of a MagLIF implosion

机译:MagLIF爆破早期的等离子体物理学

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are of a peculiar nature: very high plasma beta, modest electron magnetization, weak ion magnetization, large axial and radial heat fluxes, and possible formation of dense, radiating plasma layer near the liner. A systematic ordering of these processes will be presented and the following effects will be evaluated analytically: development of a collisional drift instability and possible appearance of enhanced transport in a high-beta plasma (based on Ref. 2); plasma shear-flow and its interaction with drift instabilities; perturbations to the axial magnetic field and conditions for the onset of the stochastic cross-field electron heat transport; penetration of the impurity ions to the plasma core. The conditions where these processes do not lead to significant degradation of plasma confinement will be identified. Possible parameters of smaller-scale experiments satisfying similarity conditions
机译:具有特殊的性质:非常高的等离子体β,适度的电子磁化,弱的离子磁化,较大的轴向和径向热通量,以及在衬套附近可能形成致密的辐射等离子体层。将对这些过程进行系统的排序,并通过分析评估以下效果:碰撞漂移不稳定性的发展以及在高β等离子体中可能出现的运输增强现象(基于参考文献2);等离子体剪切流及其与漂移不稳定性的相互作用;对轴向磁场的扰动和随机交叉场电子传热开始的条件;杂质离子渗透到等离子体核。将确定在这些过程中不会导致血浆封闭度显着降低的条件。满足相似条件的小规模实验的可能参数

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