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Synchrotron Radiation as the Source of the Polarized Decimeter Radiation from Jupiter.

机译:同步辐射作为木星偏振分米辐射源

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摘要

A Stokes parameter description is developed for synchrotronudradiation from a group of ultrarelativistic electrons with any specified distribution of positions, energies and directions of motion. This description is used to study the radiation from a shell of ultrarelativistic electrons trapped in a dipole field. It is found that the polarization observed for the 31 cm radiation from Jupiter could be obtained from such shells provided a large number of the electrons have relatively flat helices.ududThe problem of obtaining high energy , flat-helix electrons in a planetary magnetic field is considered. In particular, the effects of large scale magnetic disturbances on trapped particles are studied by following the particle guiding center motions through a disturbance. The guiding center motions of relativistic particles are determined byudusing relativistically correct drift velocity expressions obtained by application of an asymptotic approximation method of Bogolyubov and Zubarev. It has been found that these magnetic disturbances might lead to a high density of high energy, flat helix electrons; however, manyuddisturbances are required for appreciable diffusion to occur. Magnetic activity at Jupiter must be very great if this type of mechanism is to provide the relatively flat helix electrons required for the decimeter radiation from Jupiter to be synchrotron radiation.ud
机译:开发了Stokes参数描述,用于从一组具有任何指定位置,能量和运动方向的超相对论电子中进行同步辐射/辐射。该描述用于研究被困在偶极子场中的超相对论电子壳的辐射。发现从木星发出的31 cm辐射观察到的极化可以从这种壳获得,只要大量电子具有相对平坦的螺旋。 ud ud在行星磁场中获得高能,平坦螺旋电子的问题字段被考虑。尤其是,通过遵循扰动引起的粒子引导中心运动,研究了大规模磁扰动对捕获粒子的影响。相对论粒子的引导中心运动是通过使用Bogolyubov和Zubarev的渐近逼近方法获得的相对论正确漂移速度表达式来确定的。已经发现,这些磁干扰可能导致高能量的高密度扁平螺旋电子;但是,要发生明显的扩散,需要许多干扰。如果这种类型的机制是为了提供来自木星的分米辐射成为同步加速器辐射所需的相对平坦的螺旋电子,则木星的磁活动必须非常大。

著录项

  • 作者

    David B. J. Chang;

  • 作者单位
  • 年度 1962
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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