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Mechanism for magnetic field generation and growth in Rayleigh-Taylor unstable inertial confinement fusion plasmas

机译:瑞利泰勒不稳定惯性约束聚变等离子体中磁场的产生和生长机理

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Rayleigh-Taylor instabilities (RTI) in inertial confinement fusion (ICF) implosions are expected to generate magnetic fields at the gas-ice interface and at the ice-ablator interface. The focus here is on the gas-ice interface where the temperature gradient is the largest. A Hall-MHD model is used to study the magnetic field generation and growth for 2-D single-mode and multimode RTI in a stratified two-fluid plasma, the two fluids being ions and electrons. Self-generated magnetic fields are observed and these fields grow as the RTI progresses via the ? n _e × ? T _e term in the generalized Ohm's law. Srinivasan [Phys. Rev. Lett. 108, 165002 (2012)] present results of the magnetic field generation and growth, and some scaling studies in 2-dimensions. The results presented here study the mechanism behind the magnetic field generation and growth, which is related to fluid vorticity generation by RTI. The magnetic field wraps around the bubbles and spikes and concentrates in flux bundles at the perturbed gas-ice interface where fluid vorticity is large. Additionally, the results of Srinivasan [Phys. Rev. Lett. 108, 165002 (2012)] are described in greater detail. Additional scaling studies are performed to determine the growth of the self-generated magnetic field as a function of density, acceleration, perturbation wavelength, Atwood number, and ion mass.
机译:惯性约束聚变(ICF)内爆中的瑞利-泰勒不稳定性(RTI)有望在气冰界面和消冰器界面处产生磁场。这里的重点是温度梯度最大的气冰界面。 Hall-MHD模型用于研究分层的双流体等离子体中的二维单模和多模RTI的磁场生成和生长,两种流体是离子和电子。观察到自生磁场,这些磁场随着RTI通过π的发展而增长。 n _e×? T _e项在广义欧姆定律中。 Srinivasan [Phys。牧师108,165002(2012)]提出了磁场产生和生长的结果,以及一些二维尺度研究。此处显示的结果研究了磁场产生和增长的背后机制,这与RTI产生流体涡度有关。磁场环绕气泡和尖峰,并集中在扰动的气冰界面处的流体束中,在那里流体的涡度很大。此外,Srinivasan的结果[Phys。牧师108,165002(2012)]中有更详细的描述。进行了其他缩放研究,以确定自生磁场的增长与密度,加速度,摄动波长,阿特伍德数和离子质量的关系。

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