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Tunneling and mode conversion of fast magnetosonic waves in the magnetospheres of Earth and Mercury

机译:地球和汞磁层中的快速磁声波的隧穿和模式转换

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Narrow-band linearly polarized waves, having a resonant structure and a peak frequency between the local cyclotron frequency of protons and heavy ions, have been detected in the magnetospheres of Earth and of Mercury. Some of these wave events have been suggested to be driven by linear mode conversion (MC) of the fast magnetosonic waves (FWs) at the ion-ion hybrid (IIH) resonances. Since the resonant IIH frequency is linked to the plasma composition, solving the inverse problem allows one to infer the concentration of the heavy ions from the measured frequency spectra. In this paper, we identify the conditions when the MC efficiency is maximized in the magnetospheric plasmas and discuss how this can be applied for estimating the heavy ion concentration in the magnetospheres of Earth and Mercury.
机译:在地球和水星的磁层中已检测到具有共振结构以及质子和重离子的局部回旋加速器频率之间的峰值频率的窄带线性极化波。这些波事件中的某些已被认为是由离子-离子混合(IIH)共振下的快速磁声波(FW)的线性模式转换(MC)驱动的。由于共振IIH频率与等离子体成分有关,因此解决反问题可以使人们从测量的频谱中推断出重离子的浓度。在本文中,我们确定了磁层等离子体中MC效率最大化时的条件,并讨论了如何将其用于估算地球和汞磁层中的重离子浓度。

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