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Electron–cyclotron damping of helicon waves in low diverging magnetic fields

机译:低发散磁场中螺旋波的电子回旋衰减

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摘要

Particle-in-cell simulations are performed to investigate wave propagation and absorption behavior of low-field (B_0 < 5 mT) helicon waves in the presence of a diverging magnetic field. The 1D electromagnetic simulations, which include experimental external magnetic field profiles, provide strong evidence for electron–cyclotron damping of helicon waves in the spatially decaying nonuniform magnetic field. For a dipole-type magnetic field configuration, the helicon waves are absence in the downstream (lower field) region of the plasma and are observed to be completely absorbed. As the magnetic field is changed slightly however, wave damping decreases, and waves are able to propagate freely downstream, confirming previous experimental measurements of this phenomenon.
机译:进行单元内粒子模拟以研究在存在发散磁场的情况下低场(B_0 <5 mT)螺旋波的传播和吸收行为。一维电磁模拟包括实验性外部磁场分布,为空间衰减非均匀磁场中螺旋波的电子回旋衰减提供了有力的证据。对于偶极型磁场配置,在等离子体的下游(下部场)区域中不存在螺旋波,并观察到它们被完全吸收。但是,随着磁场的轻微变化,波衰减减小,并且波能够向下游自由传播,从而证实了对该现象的先前实验测量。

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