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PENGU In/AGO and THEMIS conjugate observations of whistler mode chorus waves in the dayside uniform zone under steady solar wind and quiet geomagnetic conditions

机译:忒弥斯PENGU /前和共轭的观察惠斯勒合唱模式波的光面均匀区下稳定的太阳风和安静地磁条件

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[1] We perform a case study of conjugate observations of whistler mode chorus waves on the dayside made on 26 July 2008 by three THEMIS spacecraft and ground-based ELF/ VLF receivers at the Automatic Geophysical Observatories (AGO) in Antarctica supported by the U.S. Polar Experiment Network for Geospace Upper-atmosphere Investigations(PENGUIn)project. The dayside chorus waves were excited during a period of no substorm activity with geomagnetic indices indicating quiet conditions(Dst ~ -10 nT; AE < 200 nT). The solar wind dynamic pressure was almost constant during the chorus wave intensification. Conjugate observations in the outer magnetosphere confirm that the chorus intensification was localized within the radial distance R = 7-10 RE near noon(12.5 < MLT < 13.5 h). The waves persisted for at least 1.5 h in the same location, where field lines are not accompanied by off-equatorial minimum-B pockets but rather exhibit nearly zero dB/ds, the field-aligned gradient in B-magnitude, over a wide range of magnetic latitudes(~±20°). The location did not seem to corotate with the Earth or drift with the energetic electrons. The chorus waves consisted of discrete, rising tone elements, propagating away from the magnetic equator, quasi-parallel to the ambient magnetic field(wave-normal angles < 20°). We conclude that the long-lasting, localized, quiet time dayside chorus amplification was due to the nearly zero dB/ds conditions that occur naturally in the dayside uniform zone(DUZ), the transition region between the near-Earth dipole and the compressed, off-equatorial double-minimum field configuration found closer to the magnetopause. We thus suggest that the magnetic field configuration in the dayside outer magnetosphere plays a key role in the generation of dayside chorus waves under quiet geomagnetic conditions.
机译:[1]我们执行共轭的案例研究惠斯勒合唱模式波的观测的光面2008年7月26日由三个裁判航天器和地面精灵/甚低频接收器自动地球物理天文台(前)南极洲支持由美国极地实验地球空间网络高层大气调查(企鹅)项目。在一段没有合唱波很兴奋亚暴与地磁活动指数指示安静条件(Dst ~ -10元;200元)。在合唱波几乎不变强化。外磁气圈确认合唱强化在径向本地化距离R = 7 - 10中午(12.5 < MLT < 13.5附近h)。海浪持续至少1.5 h同一位置,电场线不是伴随着off-equatorial极小b的口袋而是展览dB / ds几乎为零,在B-magnitude field-aligned梯度,在广泛的磁纬度(~±20°)。位置似乎并没有与地球同步旋转或与高能电子漂移。波浪由离散,上声元素,传播远离磁场赤道,quasi-parallel周围的磁场字段(波法线角度< 20°)。持久,本地化,安静的时间的光面合唱放大是由于几乎为零dB / ds中自然发生的条件的光面均匀区(DUZ),过渡区近地偶极子和压缩,off-equatorial双重最小值字段配置发现接近磁层。磁场配置的光面外磁气圈起着关键作用代的光面合唱波安静的地磁条件。

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