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Imaging of dipole sources and transfer of modulated signals using phase conjugating lens techniques

机译:使用相位共轭透镜技术成像偶极子源并传输调制信号

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The authors discuss the imaging properties and transfer of amplitude and phase-modulated signals through a phase conjugating lens (PCL). The authors outline the mechanisms of the near-field and far-field subwavelength imaging of Hertzian dipole sources using PCL, particularly the authors show that onedimensional subwavelength resolution of multiple sources is possible in the far-field using a PCL augmented with specially designed scatterers located in both the adjacent vicinity of the sources and in the mirror symmetric positions in the image plane. These scatterers enable evanescent-to-propagating spectrum and its dual, propagating-to-evanescent, field conversion. Thus, the subwavelength information encoded into propagating waves on the source side can be extracted on the image side. Next, for the first time the transfer of amplitude and phase modulated signals through a PCL augmented with evanescent-to-propagating spectrum conversion is discussed and it has been demonstrated that multiple amplitude or phase modulated dipole sources can be distinguished in the far-field with subwavelength resolution without the necessity for numerical post-processing of the received data. From the study conducted here, it is concluded that a system of transmitters/receivers augmented with a PCL and appropriate scatterers operates without the need for any numerical processing of the receive data in order to separate channel information from very close proximity stations.
机译:作者讨论了成像特性以及振幅和相位调制信号通过相位共轭透镜(PCL)的传输。作者概述了使用PCL对赫兹偶极子源进行近场和远场亚波长成像的机理,特别是作者表明,使用PCL并通过专门设计的散射体增强,可以在远场中对多个源进行一维亚波长分辨率在源的相邻附近以及在图像平面中的镜面对称位置中。这些散射体实现了从van逝到传播的频谱及其双重从传播到to逝的场转换。因此,可以在图像侧提取在源侧被编码为传播波的子波长信息。接下来,第一次讨论了幅度和相位调制信号通过通过through逝到传播频谱转换增强的PCL的传输,并且已经证明可以在远场中区分多个幅度或相位调制的偶极子源。亚波长分辨率,无需对接收到的数据进行数字后处理。从这里进行的研究得出的结论是,增加了PCL和适当散射体的发射机/接收机系统无需对接收数据进行任何数值处理即可工作,以将信道信息与非常靠近的站分开。

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