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Pulse radiation from an insulated antenna: an analog of Cherenkov radiation from a moving charged particle

机译:绝缘天线的脉冲辐射:来自运动带电粒子的切伦科夫辐射的类似物

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Cherenkov radiation arises when a charged particle moves with a constant velocity that is greater than the speed of light in the surrounding medium. This radiation has distinctive characteristics. Near the charge, the electric field is most intense along a conical surface with apex at the charge-the Mach cone. In the far field, the radiation occurs predominantly in one direction-at the Cherenkov angle. An insulated antenna consists of a metallic cylindrical conductor covered by a concentric sheath of dielectric. In use, this antenna is embedded in a medium whose permittivity is often much greater than the permittivity of the insulation. When the antenna is excited by a pulse of voltage, a pulse of charge appears to travel along its length. The apparent velocity of this charge is close to the speed of light in the insulation, which, because of the difference in the permittivities, is greater than the speed of light in the surrounding medium. Thus, the radiation from the pulse excited, insulated antenna should be analogous to Cherenkov radiation from the moving charged particle. In this paper, the pulse-excited, traveling-wave insulated linear antenna is accurately analyzed using the finite-difference time-domain (FDTD) method. Results are obtained for the charge on the conductor, the near field, and the far field. These results show the striking similarity of the radiation from this antenna to Cherenkov radiation from the moving charge.
机译:当带电粒子以大于周围介质中光速的恒定速度移动时,就会产生切伦科夫辐射。这种辐射具有鲜明的特征。在电荷附近,沿着圆锥形表面的电场最为强烈,该圆锥形表面的电荷在顶点处为马赫锥。在远场中,辐射主要在一个方向上以Cherenkov角发生。绝缘天线由圆柱形金属导体组成,并覆盖有同心的电介质护套。在使用中,该天线被嵌入介电常数通常远大于绝缘体介电常数的介质中。当天线被电压脉冲激发时,电荷脉冲似乎沿着其长度传播。该电荷的视在速度接近绝缘体中的光速,由于介电常数的差异,其大于周围介质中的光速。因此,来自脉冲激励的绝缘天线的辐射应类似于来自运动带电粒子的切伦科夫辐射。本文使用时域有限差分法(FDTD)对脉冲激励行波绝缘线性天线进行了精确分析。获得导体上的电荷,近场和远场的结果。这些结果表明,该天线的辐射与运动电荷产生的切伦科夫辐射具有惊人的相似性。

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