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Generation of the Jovian hectometric radiation: First lessons from Juno

机译:jovian张力辐射的产生:朱诺的第一堂课

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Using Juno plasma and wave and magnetic observations (JADE and Waves and MAG instruments), the generation mechanism of the Jovian hectometric radio emission is analyzed. It is shown that suitable conditions for the cyclotron maser instability (CMI) are observed in the regions of the radio sources. Pronounced loss cone in the electron distributions are likely the source of free energy for the instability. The theory reveals that sufficient growth rates are obtained from the distribution functions that are measured by the JADE-Electron instrument. The CMI would be driven by upgoing electron populations at 5-10 keV and 10-30 degrees pitch angle, the amplified waves propagating at 82 degrees-87 degrees from the B field, a fraction of a percent above the gyrofrequency. Typical e-folding times of 10(-4) s are obtained, leading to an amplification path of similar to 1000 km. Overall, this scenario for generation of the Jovian hectometric waves differs significantly from the case of the auroral kilometric radiation at Earth.
机译:使用朱诺等离子体和波和磁性观测(JADE和波和MAG仪器),木星hectometric无线电发射的产生机理进行了分析。结果表明,在所述无线电资源的区域被观察到回旋加速器微波激射器的不稳定性(CMI)在合适的条件。在电子分布明显损失锥有可能自由能为不稳定的来源。理论表明,足够的生长速率是从由JADE-电子仪器测得的分布函数获得。的CMI将由上行电子群体:5-10千电子伏和10-30度的俯仰角来驱动,将放大的波传播的在82°〜87从B字段度,的回转频率高于百分之零点几。得到的10(-4)■典型电子折叠倍,导致类似的放大路径1000公里。总体而言,这种情况下对于一代木星百米波的从地球极光千米辐射的情况显著不同。

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