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Polarization-Dependent Quasi-Far-Field Superfocusing Strategy of Nanoring-Based Plasmonic Lenses

机译:纳米环等离子透镜的偏振相关准远场超聚焦策略

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摘要

The two-dimensional superfocusing of nanoring-based plasmonic lenses (NRPLs) beyond the diffraction limit in the far-field region remains a great challenge at optical wavelengths. In this paper, in addition to the modulation of structural parameters, we investigated the polarization-dependent focusing performance of a NRPL employing the finite-difference time-domain (FDTD) method. By utilizing the state of polarization (SOP) of incident light, we successfully realize the elliptical-, donut-, and circular-shape foci. The minimum full widths at half maximum (FWHMs) of these foci are ~0.32, ~0.34, and ~0.42 λ 0 in the total electric field, respectively, and the depth of focus (DOF) lies in 1.41~1.77 λ 0. These sub-diffraction-limit foci are well controlled in the quasi-far-field region. The underlying physical mechanism on the focal shift and an effective way to control the focusing position are proposed. Furthermore, in the case of a high numerical aperture, the longitudinal component, which occupies over 80% of the electric-field energy, decides the focusing patterns of the foci. The achieved sub-diffraction-limit focusing can be widely used for many engineering applications, including the super-resolution imaging, particle acceleration, quantum optical information processing, and optical data storage.
机译:基于纳米环的等离子透镜(NRPL)的二维超聚焦超出了远场区域的衍射极限,这在光波长下仍然是一个巨大的挑战。在本文中,除了对结构参数进行调制之外,我们还使用时域有限差分(FDTD)方法研究了NRPL的偏振相关聚焦性能。通过利用入射光的偏振态(SOP),我们成功地实现了椭圆形,甜甜圈形和圆形的焦点。这些焦点的最小半高全宽(FWHMs)在整个电场中分别为〜0.32,〜0.34和〜0.42λ0,而焦深(DOF)在1.41〜1.77λ0内。在准远场区域,亚衍射极限焦点得到了很好的控制。提出了焦点移动的潜在物理机制以及控制焦点位置的有效方法。此外,在高数值孔径的情况下,纵向分量占据了焦点的聚焦方式,该纵向分量占据了电场能量的80%以上。所实现的亚衍射极限聚焦可广泛用于许多工程应用,包括超分辨率成像,粒子加速,量子光学信息处理和光学数据存储。

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