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首页> 外文期刊>Plasma physics and controlled fusion >An improved gyrokinetic electron and fully kinetic ion particle simulation scheme: Benchmark with a linear tearing mode
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An improved gyrokinetic electron and fully kinetic ion particle simulation scheme: Benchmark with a linear tearing mode

机译:改进的回旋动电子和全动离离子粒子模拟方案:具有线性撕裂模式的基准

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摘要

An improved gyrokinetic electron and fully kinetic ion (GeFi) particle simulation scheme is presented for the investigation of linear collisionless tearing mode instability in a two-dimensional Harris current sheet under a finite guide field B_G and a realistic ion-to-electron mass ratio m_i/m_e. Due to the removal of the rapid electron cyclotron motion while retaining the finite electron Larmor radii, wave-particle interaction, and off-diagonal components of the electron pressure tensor, the GeFi model can be used to investigate the physics of magnetic reconnection with a realistic mi/me in a large-scale current sheet, which in general possesses wave modes ranging from Alfvén waves to lower hybrid/whistler waves, with wave frequency ω < Ω_e, where Ω_e is the electron gyrofrequency. As a necessary step of utilizing the code for magnetic reconnection, the linearized GeFi scheme is benchmarked by comparing the simulation results using a δf method against direct numerical solutions of the tearing-instability eigenmode equations, as well as those obtained analytically via asymptotic matching.
机译:为了研究二维哈里斯电流薄板在有限引导场B_G和实际离子电子质量比m_i下的线性无碰撞撕裂模式的不稳定性,提出了一种改进的回旋动电子和全动离子(GeFi)粒子模拟方案。 /我。由于消除了快速的电子回旋加速器运动,同时保留了有限的电子拉莫尔半径,波粒相互作用以及电子压力张量的非对角线分量,因此,GeFi模型可用于研究磁重联的物理过程。大型电流表中的mi / me,通常具有从Alfvén波到较低的混合/惠斯勒波的波模,波频率ω<Ω_e,其中Ω_e是电子陀螺频率。作为利用代码进行磁重连接的必要步骤,通过将δf方法的仿真结果与撕裂不稳定本征模态方程的直接数值解以及通过渐近匹配解析得到的数值解进行比较,从而对线性化GeFi方案进行基准测试。

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