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首页> 外文期刊>The Astrophysical journal >ELECTRON-CYCLOTRON MASER THEORY FOR NONINTEGER RATIO EMISSION FREQUENCIES IN SOLAR MICROWAVE SPIKE BURSTS
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ELECTRON-CYCLOTRON MASER THEORY FOR NONINTEGER RATIO EMISSION FREQUENCIES IN SOLAR MICROWAVE SPIKE BURSTS

机译:微波峰值突波中非整数比率发射频率的电子-回旋激元理论

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An electron-cyclotron maser theory is developed to explain the recent observations of solar microwave millisecond spike bursts in which multiple bands were observed with frequency ratios not consistent with emission at integer harmonics of the cyclotron frequency, as predicted by standard theory. It is proposed here that several adjacent Bernstein modes are excited via the cyclotron maser mechanism and that the radiation escapes the corona via nonlinear wave-wave interactions. The growth rate is evaluated for a model electron distribution to demonstrate that several modes grow simultaneously at similar rates and that the observed frequency ratios are consistent with this model. The condition for saturation of the nonlinear process of Bernstein wave coalescence is shown to be satisfied for typical parameters and can account for the observed brightness temperatures and timescales of solar microwave spike bursts. These conclusions are only weakly dependent on the free parameters in the model.
机译:电子回旋加速器激射理论得以发展,以解释最近对太阳微波毫秒尖峰脉冲的观察,其中观察到多个频带,其频率比与回旋加速器的整数倍谐波发射不符,这是标准理论所预测的。在此提出,几个相邻的伯恩斯坦模通过回旋加速器激射器机理被激发,并且辐射通过非线性波-波相互作用从电晕中逸出。对模型电子分布的生长速率进行了评估,以证明几种模式以相似的速率同时生长,并且观察到的频率比与此模型一致。伯恩斯坦波合并的非线性过程的饱和条件表明满足典型参数,并且可以解释太阳微波尖峰爆发的观测温度和时间尺度。这些结论仅弱依赖于模型中的自由参数。

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