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Generalized Covariant Gyrokinetic Dynamics of Magnetoplasmas

机译:磁化的广义协变性能动力学

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A basic prerequisite for the investigation of relativistic astrophysical magnetoplasmas, occurring typically in the vicinity of massive stellar objects (black holes, neutron stars, active galactic nuclei, etc.), is the accurate description of singleparticle covariant dynamics, based on gyrokinetic theory (Beklemishev et al.,1999-2005). Provided radiation-reaction effects are negligible, this is usually based on the assumption that both the space-time metric and the EM fields (in particular the magnetic field) are suitably prescribed and are considered independent of single-particle dynamics, while allowing for the possible presence of gravitational/EM perturbations driven by plasma collective interactions which may naturally arise in such systems. The purpose of this work is the formulation of a generalized gyrokinetic theory based on the synchronous variational principle recently pointed out (Tessarotto et al., 2007) which permits to satisfy exactly the physical realizability condition for the four-velocity. The theory here developed includes the treatment of nonlinear perturbations (gravitational and/or EM) characterized locally, i.e., in the rest frame of a test particle, by short wavelength and high frequency. Basic feature of the approach is to ensure the validity of the theory both for large and vanishing parallel electric field. It is shown that the correct treatment of EM perturbations occurring in the presence of an intense background magnetic field generally implies the appearance of appropriate four-velocity corrections, which are essential for the description of single-particle gyrokinetic dynamics.
机译:相对论天体物理magnetoplasmas人的研究,在大规模的星体(黑洞,中子星,活动星系核等)的附近通常存在的一个基本先决条件,是singleparticle协变动力学的精确描述中,基于gyrokinetic理论(Beklemishev等人,1999-2005)。提供辐射反应的影响是可忽略的,这通常是基于这样的假设,无论是空间 - 时间度量和所述EM场(特别是磁场)被适当地规定,并且被认为独立的单粒子动力学的,同时允许通过其可在这样的系统中自然产生的等离子体集体相互作用从动引力/ EM扰动的可能存在。这个工作的目的是广义gyrokinetic理论的基础上最近指出的同步变分原理的配方(Tessarotto等人,2007),其允许满足恰好为四速的物理实现性条件。这里开发的理论包括非线性扰动的处理(引力和/或EM),其特征在于局部地,即,在测试颗粒的其余帧,通过短波长和高频率。该方法的基本特征是,以保证理论的正确性既为大和消失的平行电场。结果表明,在一个强烈的背景磁场的存在下发生EM扰动的正确的治疗通常意味着适当的四维速度校正,这对于单粒子gyrokinetic动力学的描述所必需的外观。

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