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The effect of electron beams on cyclotron maser emission excited by lower-energy cutoffs

机译:电子束对低能截止激发回旋加速器激射辐射的影响

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Electron-cyclotron maser (ECM) is one of the most important emission mechanisms in astrophysics and can be excited efficiently by lower-energy cutoffs of power-law electrons. These non-thermal electrons probably propagate as a directed collimated beam along ambient magnetic fields. This paper investigates the ECM, in which the effect of electron beams is emphasized. Results show the dependence of emission properties of the ECM on the beam feature. The maximum growth rate of the extraordinary mode (X2) rapidly decreases as the beam momentum increases, while the growth rate of the ordinary mode (O1) changes slightly. In particular, the ordinary mode can overcome the extraordinary mode and becomes the fastest growth mode once the beam momentum is large enough. This research presents an extension of the conventional studies on ECM driven by lower-energy cutoffs and may be helpful to understand better the emission process of solar type I radio bursts, which are dominated by the ordinary mode emission. Published by AIP Publishing.
机译:电子回旋加速器激射器(ECM)是天体物理学中最重要的发射机制之一,可以通过幂律电子的低能截止来有效激发。这些非热电子可能会作为定向准直光束沿周围磁场传播。本文研究了ECM,其中强调了电子束的作用。结果表明,ECM的发射特性与光束特征有关。随着光束动量的增加,非常规模式(X2)的最大增长率迅速降低,而常规模式(O1)的增长率则略有变化。特别地,一旦光束动量足够大,普通模式就可以克服非常规模式并成为最快的增长模式。这项研究提出了由低能级截止驱动的ECM常规研究的扩展,可能有助于更好地了解I型太阳无线电脉冲串的发射过程,该过程主要由普通模式发射决定。由AIP Publishing发布。

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