首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Beam bending through compound structure with two subwavelength metallic slits in each period
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Beam bending through compound structure with two subwavelength metallic slits in each period

机译:光束通过复合结构弯曲,每个周期具有两个亚波长金属狭缝

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摘要

To provide a more practical, easy-to-implement method to achieve directional modulation with a plasmonic lens, beam manipulation method via compound metallic gratings with two subwavelength slits filled with different dielectrics inside each period is proposed and numerically investigated by finitedifference time-domain (FDTD) method. Compared with conventional metal-grating based structures, phase retardation is tuned by the Fabry-Pérot (FP) resonant condition and light bending is achieved by constructing a carefully designed, curved phase front for the plasmonic lenses. Our designs have advantages in ease of fabrication and capability to perform in the far field. With these advantages, the designs are expected to be valuable in applications such as plasmonic circuits and photonic communication.
机译:为了提供一种使用等离子透镜实现方向调制的更实用,易于实现的方法,提出了通过复合金属光栅进行光束操纵的方法,该复合金属光栅具有两个子波长缝隙,每个缝隙在每个周期内填充有不同的电介质,并通过有限差分时域进行了数值研究( FDTD)方法。与传统的基于金属光栅的结构相比,可通过Fabry-Pérot(FP)共振条件来调整相位延迟,并通过为等离子透镜构造精心设计的弯曲相位前锋来实现光弯曲。我们的设计在易于制造和在远距离领域具有执行能力方面具有优势。有了这些优点,这些设计有望在等离子电路和光子通信等应用中有价值。

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