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Fine Harmonic Structure of Equatorial Noise with a Quasiperiodic Modulation

机译:细的赤道噪声谐波结构准周期的调制

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Equatorial noise emissions (fast magnetosonic waves) are electromagnetic waves observed routinely in the equatorial region of the inner magnetosphere. They propagate with wave vectors nearly perpendicular to the ambient magnetic field; that is, they are limited to frequencies below the lower hybrid frequency. The waves are generated by instabilities of ring-like proton distribution functions, which result in their fine harmonic structure with intensity maxima close to harmonics of the proton cyclotron frequency in the source region. Although most equatorial noise emissions are continuous in time, some events exhibit a clear quasiperiodic time modulation of the wave intensity, with typical modulation periods on the order of minutes.We analyze 72 such events (17 observed by the Cluster spacecraft, 55 observed by the Van Allen Probes spacecraft) for which high-resolution data were available. The analysis of the observed harmonic structure allows us to determine source radial distances of the events. It is found that the calculated source radial distances are generally close to the radial distances where the events were observed. The harmonic numbers where the events are generated range between about 12 and 30. Two events for which the spacecraft passed through the generation region were identified and analyzed. No simultaneous ultra-low-frequency magnetic field pulsations and no periodic plasma number density variations were observed. Although the in situ measured proton distribution functions were shown to be responsible for the wave growth, an insufficient resolution of the particle instruments prevented us from detecting a quasiperiodic modulation possibly present in the particle data.
机译:赤道噪声排放(magnetosonic快波)是电磁波经常在赤道地区的内部磁气圈。近垂直于周围的磁场场;下面的混合频率越低。生成不稳定的环状质子分布函数,这导致他们的良好的谐波结构强度最大值接近质子回旋谐波频率源地区。赤道噪声排放是连续的展示一个清晰的准周期的时间,一些事件时间调制波的强度典型的调制周期的分钟。集群航天器,55观察范艾伦探测飞船)高分辨率数据可用为止。让我们观察到的谐波结构确定源径向距离的事件。发现计算径向来源距离通常接近径向距离观察的事件。谐波数据生成的事件大约12到30不等。宇宙飞船通过一代地区进行了识别和分析。没有同时ultra-low-frequency磁磁场脉动,没有周期性的等离子体数量密度的变化被观察到。原位测量质子分布函数负责波增长,显示一个分辨率不足的粒子阻止我们探测工具准周期的调制可能出现在粒子的数据。

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