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The Polarization Purity of the Electromagnetic Field in a Reverberating Chamber

机译:混响室中电磁场的极化纯度

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摘要

The quintessence of electromagnetic fields propagating in complex environments is its stochastic nature. The canonical test facility to emulate such a complex case is the reverberating chamber (RC). In order to design, test, and model the electromagnetic field in an RC, one must consider the vectorial nature of the field. The electromagnetic field within an RC has a random 3-D structure that must be properly taken into account to analyze it. A robust and basis invariant analysis of the randomness of such 3-D field is here undertaken estimating the polarization purity, i.e., the degree of polarization. In this paper, a new approach, based on the decomposition of the 3-D degree of polarization, is exploited to analyze the electromagnetic field within an RC. Experiments, undertaken exploiting the RC of Università degli Studi di Napoli Parthenope, formerly Istituto Universitario Navale (IUN), provide a first experimental validation of the aforementioned decomposition in the microwave range of frequency. In addition, such decomposition, being able to sort out information related to the stability of the polarization ellipse and of the direction of propagation, is a key tool to analyze the effectiveness of the stirring process within the RC.
机译:在复杂环境中传播的电磁场的精髓是其随机性。模仿这种复杂情况的规范测试设备是混响室(RC)。为了设计,测试和建模RC中的电磁场,必须考虑该场的矢量性质。 RC内部的电磁场具有随机的3-D结构,必须对其进行适当分析才能对其进行分析。在此对这样的3-D场的随机性进行鲁棒且基本不变的分析,以估计偏振纯度,即偏振度。在本文中,一种基于3-D极化度分解的新方法被用来分析RC内部的电磁场。利用前那不勒斯大学纳维莱分校(IUN)的那不勒斯帕特诺佩分校的RC进行的实验,为上述在微波频率范围内的分解提供了第一个实验验证。此外,这种分解能够挑选出与极化椭圆的稳定性和传播方向有关的信息,是分析RC内搅拌过程有效性的关键工具。

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