Propagation Characterization of the Electromagnetic Wave along with the Interface between Two Lossless Dielectric Media

B. Som
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Abstract

A Transverse Electric (TE) mode of propagation having the electric field perpendicular to the interface is considered. Two media are assumed to be lossless. Phase velocities of the waves through the two media and the interface are calculated. These velocities are found to be different from the actual phase velocities in the dielectrics. The phase velocity in one dielectric is modified by the presence of another dielectric medium. The phase velocities in the two media are greater than the phase velocity of the wave along with the interface. Also, the phase velocities in the media in contact are greater than the velocities of the wave in the two media when they are separated. The wave is found to bend away from the interface in both the media. Very low loss dielectric media are practically lossless at very low frequencies. These dielectric media may be useful for Wireless Power Transmission (WPT) system. The bending property of the electromagnetic wave away from the interface and the low loss will help one to locate the receivers away from the transmitter in the WPT system. The use of very low loss dielectric media and Very Low Frequency (VLF) transmitter are suggested for efficient WPT systems.
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电磁波沿两种无损介质界面的传播特性
考虑了电场垂直于界面的横向电(TE)传播模式。假设两种介质是无损的。计算了波通过两种介质和界面的相速度。发现这些速度与介电体中的实际相速度不同。一种介质中的相速度因另一种介质的存在而改变。两种介质中的相速度大于沿界面波的相速度。同时,当两种介质分离时,接触介质中的相速度大于两种介质中的波的速度。发现波在两种介质中都从界面处弯曲。极低损耗介质在极低频率下几乎是无损的。这些介质可用于无线电力传输(WPT)系统。在WPT系统中,远离接口的电磁波的弯曲特性和低损耗将有助于定位远离发射机的接收机。建议使用极低损耗介质和甚低频发射机作为高效的WPT系统。
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