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Resonant Transition Radiation and Solar Radio Bursts

机译:共振跃迁辐射和太阳无线电爆发

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This paper presents general relations for the intensity of the resonant transition radiation (RTR) and their detailed analysis. This analysis shows that the spectrum amplitude of the x-mode at some frequencies for high-energy electrons can grow with the magnetic field increase in some interval from zero value; it can even dominate over that for the o-mode. With further magnetic field increase, the intensity of the RTR x-mode decreases in comparison with the intensity of the o-mode and this decrease is higher for higher velocities of energetic electrons. The polarization of the RTR depends on the velocity of energetic electrons, too. For velocities lower than some velocity limit v i the RTR emission is unpolarized in a broad interval of magnetic field intensities in the radio source. For reasonable values of indices of the power-law distribution functions of energetic electrons, the RTR is broadband in frequencies (df/f≈0.2−0.4). Furthermore, we show various dependencies of the RTR and its spectral characteristics. Assuming the same radio flux of the transition radiation and the gyro-synchrotron one at the Razin frequency, we estimate the limit magnetic field in the radio source of the transition radiation. Then, we analyze possible sources of small-scale inhomogeneities (thermal density fluctuations, Langmuir and ion-sound waves), which are necessary for the transition radiation. Although the small-scale inhomogeneities connected with the Langmuir waves lead to the plasma radiation, which is essentially stronger than RTR, the inhomogeneities of the ion-sound waves are suitable for the RTR without any other radiation. We present the relations describing the RTR for anisotropic distribution functions of fast electrons. We consider the distribution functions of fast electrons in the form of the Legendre polynomials which depend on the pitch-angle. We analyze the influence of the degree of the anisotropy (an increase of the number of terms in the Legendre polynomial) on spectral characteristics of the RTR. A comparison with previous studies is made. As an example of the use of the derived formulas for the RTR, the 24 December 1991 event is studied. It is shown that the observed decimetric burst can be generated by the RTR in the plasma with the density inhomogeneities at the level 〈ΔN 2〉/N 2=2.5⋅10−5.
机译:本文介绍了共振跃迁辐射(RTR)强度的一般关系及其详细分析。分析表明,高能电子在某些频率下的x模频谱幅度可以随着磁场从零值开始的一定间隔而增大;它甚至可以胜过O模式。随着磁场的进一步增加,RTR x模的强度与o模的强度相比降低,并且对于更高速度的高能电子,这种降低更高。 RTR的极化也取决于高能电子的速度。对于低于某个速度极限v i 的速度,RTR发射在无线电源中很宽的磁场强度间隔内是非极化的。对于高能电子的幂律分布函数的指数的合理值,RTR在频率上是宽带的(df /f≈0.2-0.4)。此外,我们显示了RTR及其光谱特性的各种依赖性。假设过渡辐射和陀螺同步加速器在拉津频率下的辐射通量相同,我们估计过渡辐射的辐射源中的极限磁场。然后,我们分析了过渡辐射所必需的小尺度不均匀性的可能来源(热密度波动,朗缪尔和离子声波)。尽管与朗缪尔波有关的小尺度不均匀性会导致等离子体辐射,该辐射本质上比RTR强,但离子声波的不均匀性适合于RTR,而没有任何其他辐射。我们提出了描述快速电子各向异性分布函数的RTR的关系。我们考虑依赖于俯仰角的勒让德多项式形式的快电子的分布函数。我们分析了各向异性程度(Legendre多项式中项数的增加)对RTR频谱特性的影响。与以前的研究进行了比较。作为在RTR中使用派生公式的示例,对1991年12月24日事件进行了研究。结果表明,等离子体中的RTR可以产生所观测到的十分之一猝发,其密度不均匀度为〈ΔN 2 〉 / N 2 =2.5⋅10< sup> -5

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