电荷穿过倒锥形目标时的切伦科夫辐射

A. Tyukhtin, S. Galyamin, V. Vorobev, A. A. Grigoreva
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引用次数: 6

摘要

分析了电荷在介质锥的真空通道中运动所产生的辐射。假设电荷通过锥从顶点侧移动到底侧(“倒”锥的情况)。锥体的尺寸应该比考虑的波长大得多。我们用以前的文章中提出的“孔径法”计算目标外的波场。与前面考虑的问题相反,这里直接入射到孔上的波不是主波,而从侧面反射回来的波要重要得多。得到了辐射场的一般公式,并对射线光学区和夫琅和费区的特殊情况进行了分析。讨论了包括“切伦科夫聚光灯”现象在内的重要物理效应。特别是表明,这种现象可以在一定的问题参数选择下达到远场区域辐射强度的本质增强。由于“倒”锥的几何特性,在任意电荷速度下,包括在超相对论情况下,只要选择合适的锥材料和锥顶角,就可以实现这种效应。展示了远场区域的典型辐射模式。
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Cherenkov radiation of a charge flying through the inverted conical target
Radiation generated by a charge moving through a vacuum channel in a dielectric cone is analyzed. It is assumed that the charge moves through the cone from the apex side to the base side (the case of "inverted" cone). The cone size is supposed to be much larger than the wavelengths under consideration. We calculate the wave field outside the target using the "aperture method" developed in our previous papers. Contrary to the problems considered earlier, here the wave which incidences directly on the aperture is not the main wave, while the wave once reflected from the lateral surface is much more important. The general formulas for the radiation field are obtained, and the particular cases of the ray optics area and the Fraunhofer area are analyzed. Significant physical effects including the phenomenon of "Cherenkov spotlight" are discussed. In particular it is shown that this phenomenon allows reaching essential enhancement of the radiation intensity in the far-field region at certain selection of the problem parameters. Owing to the "inverted" cone geometry, this effect can be realized for arbitrary charge velocity, including the ultra relativistic case, by proper selection of the cone material and the apex angle. Typical radiation patterns in the far-field area are demonstrated.
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