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Terahertz far-field subwavelength imaging by frequency scanning

机译:太赫兹远场亚波长频率扫描成像

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We theoretical and simulated demonstrate frequency scanning can be an effective approach to realize terahertz far-field subwavelength imaging. The imaging device composed of metallic gratings and coupler has the ability of coupling evanescent wave and transforming them to corresponding propagating waves so that the subwavelength details will be conserved in the imaging process. By carrying out frequency scanning simulation and a simple data processing from 0.1 THz to 0.24 THz, the operating spatial spectrum is dramatically extended to 5k0 (k is the wavenumber of 0.24 THz) in the far-field, which is well verified our method. Better spatial spectrum range can be expected by decreasing period of grating and increasing scanning frequency points. We are confident this method will find useful applications in terahertz imaging area.
机译:我们从理论和仿真上证明了频率扫描是实现太赫兹远场亚波长成像的有效方法。由金属光栅和耦合器组成的成像设备具有耦合e逝波并将其转换为相应的传播波的能力,因此在成像过程中将保留亚波长细节。通过执行频率扫描仿真和从0.1 THz到0.24 THz的简单数据处理,工作空间频谱在远场中显着扩展到5k0(k为0.24 THz的波数),这已得到我们方法的充分验证。通过减少光栅的周期并增加扫描频率点,可以期望获得更好的空间光谱范围。我们相信这种方法将在太赫兹成像领域找到有用的应用。

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