Generation of O-Mode in the Presence of Ion-Cyclotron Drift Wave Turbulence in a Nonuniform Plasma

IF 1 Q3 PHYSICS, MULTIDISCIPLINARY East European Journal of Physics Pub Date : 2023-09-04 DOI:10.26565/2312-4334-2023-3-09
Banashree Saikia, P.N. Deka
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Abstract

This study aims to investigate the effect of ion-cyclotron drift wave turbulence on the generation of ordinary mode (O-mode) in the presence of density and temperature gradients. For this, a Vlasov plasma is considered where a resonant, and non-resonant modes are considered to be present in the system. Here, the non-resonant mode is a perturbation caused by O-mode in a quasi-steady state of plasma, which is characterised by the presence of low frequency ion-cyclotron resonant mode waves. The interaction between these waves is studied by the Vlasov-Maxwell set of equations and a modified Maxwellian-type distribution function for particles that includes the external force field and associated density and temperature gradient parameters . The study analyses the growth rate of electromagnetic O-mode at the expense of ion-cyclotron drift wave energy and the associated impact of the density and temperature gradient. This model uses the linear response theory on weakly turbulent plasma, evaluates the responses due to turbulent and perturbed fields, and obtains the nonlinear dispersion relation for O-mode.
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非均匀等离子体中离子回旋漂移波湍流存在下o模式的产生
本研究旨在探讨在存在密度和温度梯度的情况下,离子回旋漂移波湍流对普通模式(o模式)产生的影响。为此,在考虑系统中存在共振模式和非共振模式的情况下,考虑弗拉索夫等离子体。这里,非共振模式是等离子体准稳态下由o模式引起的扰动,其特征是存在低频离子回旋共振模式波。利用Vlasov-Maxwell方程组和修正的麦克斯韦分布函数研究了这些波之间的相互作用,其中包括外力场和相关的密度和温度梯度参数。研究分析了离子回旋加速器漂移波能量损失下电磁o模的增长速度以及密度梯度和温度梯度的影响。该模型利用弱湍流等离子体的线性响应理论,计算了湍流场和扰动场对等离子体的响应,得到了o型的非线性色散关系。
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来源期刊
East European Journal of Physics
East European Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.10
自引率
25.00%
发文量
58
审稿时长
8 weeks
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