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EM-wave consideration through polarization and magnetization effects in fiber optics

机译:通过光纤中的极化和磁化效应来考虑光纤

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Optical fiber communication is the field of the applied science and a promising technique that permits the communication of data in the form of audio and video signal over transparent medium with high data rate over longer distances. Due to the property of fiber optics that it carries high frequency and allows high bandwidth, as the information travels through fiber optic cable in the form of light which belongs to the spectrum of EM wave. The intensity of the electromagnetic radiation decreases in the non conducting medium due to the scattering and absorption of photons. The research on the behavior of electric and magnetic components of EM waves in the non conducting medium is already done. This paper focuses on the new relationship between wave numbers and the amplitudes of electric & magnetic components in the medium with zero conductivity where σ=0. And also discusses a new relationship to calculate the effect of magnetization and polarization effect of electric and magnetic field components in EM wave. This paper carries competitive advantages for the researchers in the field of optical fiber to calculate the relationship for plane wave in fiber optics.
机译:光纤通信是所应用的科学领域和有希望的技术,其允许以高数据速率的透明介质在音频和视频信号形式中允许与具有高的距离的透明介质的通信。由于光光学器件的性质,它带有高频并允许高带宽,作为信息以光的形式传递属于EM波的光谱的光纤电缆。由于光子的散射和吸收,电磁辐射的强度降低了非导电介质。已经完成了关于非导电介质中的EM波的电和磁性分量的行为的研究。本文重点介绍波数与介质中电磁性部件的幅度之间的新关系,零电导率在其中σ= 0。并且还讨论了一种新的关系,以计算EM波中电和磁场分量的磁化和偏振效应的影响。本文对光纤领域的研究人员进行竞争优势,以计算光纤中平面波的关系。

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