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Dielectric characteristics for radio frequency waves in a laboratory dipole plasma

机译:实验室偶极等离子体中射频波的介电特性

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摘要

Transverse and parallel dielectric permittivity elements have been derived for radio frequency waves in a laboratory dipole magnetic field plasma. Vlasov equation is resolved for both the trapped and untrapped particles as a boundary value problem to define their separate contributions to the dielectric tensor components. To estimate the wave power absorbed in the plasma volume the perturbed electric field and current density components are decomposed in a Fourier series over the poloidal angle. In this case, the dielectric characteristics can be analyzed independently of the solution of the Maxwell's equations. As usual, imaginary part of the parallel permittivity elements is necessary to estimate the electron Landau damping of radio frequency waves, whereas imaginary part of the transverse permittivity elements is important to estimate the wave dissipation by the cyclotron resonances. Computations of the imaginary part of the parallel permittivity elements are carried out in a wide range of the wave frequencies. (c) 2006 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:已经针对实验室偶极子磁场等离子体中的射频波推导了横向和并联介电常数元件。对于被捕获和未被捕获的粒子,都将Vlasov方程作为边界值问题进行解析,以定义它们对介电张量分量的单独贡献。为了估算在等离子体体积中吸收的波功率,在极角上以傅立叶级数分解了受干扰的电场和电流密度分量。在这种情况下,可以独立于麦克斯韦方程组的解来分析介电特性。通常,平行介电​​常数的虚部对于估算射频波的电子Landau阻尼是必需的,而横向介电常数的虚部对于估算回旋加速器的波耗散则很重要。平行介电常数元件的虚部的计算在大范围的波频率中进行。 (c)2006威尼海姆威利威世私人有限公司。

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