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Asymmetric micro-Doppler frequency comb generation via magnetoelectric coupling

机译:通过磁电耦合产生的不对称微多普勒频率梳状

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Electromagnetic scattering from moving bodies, being an inherently time-dependent phenomenon, gives rise to a generation of new frequencies, which can be used to characterize the motion. Whereas an ordinary motion along a linear path produces a constant Doppler shift, an accelerated scatterer can generate a micro-Doppler frequency comb. The spectra produced by rotating objects were studied and observed in a bistatic lock-in detection scheme. The internal geometry of a scatterer was shown to determine the spectrum, and the degree of structural asymmetry was suggested to be identified via signatures in the micro-Doppler comb. In particular, hybrid magnetoelectric particles, showing an ultimate degree of asymmetry in forward and backward scattering directions, were investigated. It was shown that the comb in the backward direction has signatures at the fundamental rotation frequency and its odd harmonics, whereas the comb of the forward scattered field has a prevailing peak at the doubled frequency and its multiples. Additional features of the comb were shown to be affected by the dimensions of the particle and by the strength of the magnetoelectric coupling. Experimental verification was performed with a printed circuit board antenna based on a wire and a split ring, while the structure was illuminated at a 2 GHz carrier frequency. Detailed analysis ofmicro-Doppler combs enables remote detection of asymmetric features of distant objects and could find use in a span of applications, including stellar radiometry and radio identification.
机译:移动体的电磁散射是一种固有的时间依赖现象,产生了一种新的频率,可用于表征运动。虽然沿线性路径的普通运动产生恒定的多普勒换档,但加速散射器可以产生微多普勒频率梳状。通过旋转物体产生的光谱在双面锁定检测方案中进行并观察。显示散射体的内部几何形状来确定光谱,并建议通过微多普勒梳状物的签名鉴定结构不对称程度。特别地,研究了混合磁电颗粒,显示出前方和向后散射方向的最终不对称程度。结果表明,向后方向上的梳子处具有基本旋转频率及其奇数谐波的符号,而前向散射场的梳状在双倍频率下具有普遍的峰值及其倍数。梳子的附加特征被示出为受颗粒的尺寸和磁电联轴器的强度影响。使用基于导线和分开环的印刷电路板天线进行实验验证,而该结构以2GHz载波频率照射。详细分析了Micro-Doppler Combs,可以远程检测远程物体的不对称特征,可以在跨度应用中使用,包括恒星辐射测定和无线电识别。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第24期|235139.1-235139.7|共7页
  • 作者单位

    School of Electrical Engineering Tel Aviv University Tel Aviv 69978 Israel Information Technologies Mechanics and Optics (ITMO) University St. Petersburg 197101 Russia;

    School of Electrical Engineering Tel Aviv University Tel Aviv 69978 Israel;

    School of Electrical Engineering Tel Aviv University Tel Aviv 69978 Israel Information Technologies Mechanics and Optics (ITMO) University St. Petersburg 197101 Russia;

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