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Far field superfocusing along with enhanced near field emission from hybrid spiral plasmonic lens inscribed with nano corrals slit diffractor

机译:带有纳米级环形狭缝衍射物的混合螺旋等离子透镜的远场超聚焦和增强的近场发射

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摘要

Here, we have numerically calculated electric field intensity and phase of the emission from various hybrid spiral plasmonic lenses (HSPL) in near field as well as in far-field. We have proposed a novel HSPL inscribed with nano corrals slit (NCS) and compared its focusing ability with other HSPLs inscribed with circular slit and circular grating. With the use of nano corrals slit, we have been able to improve light intensity in the far-field without compromising near-field intensity. Our NCS-HSPL outperforms other HSPLs and standalone SPL in near-field as well as far-field. We have also found that proposed circular slit diffractor is far more superior than previously reported circular grating diffractor. We have been able to extend the focal length of hybrid plasmonic lens upto 3 um and observed a two-fold increment in the far field intensity compared to existing spiral plasmonic lens even though size of focal spot remains same. Optical complex fields produced by NCS based HSPL can be used for various applications such as super resolution microscopy, nanolithography, bioimaging and sensing, angular momentum detectors, etc. Moreover, enhanced near-field intensity in conjunction with far-field superfocusing with reasonable focal length may lead to the development of novel multifunctional lab-on-chip devices.
机译:在这里,我们已经通过数值计算了近场和远场中各种混合螺旋等离子透镜(HSPL)的发射电场强度和发射相位。我们提出了一种刻有纳米级缝隙(NCS)的新型HSPL,并将其聚焦能力与刻有圆形缝隙和圆形光栅的其他HSPL进行了比较。通过使用纳米围栏狭缝,我们能够在不损害近场强度的情况下提高远场的光强度。我们的NCS-HSPL在近场和远场均优于其他HSPL和独立SPL。我们还发现,提出的圆缝衍射器比以前报道的圆光栅衍射器优越得多。我们已经能够将混合等离子透镜的焦距延长到3 um,并且即使焦点尺寸保持不变,远场强度也比现有的螺旋等离子透镜增加了两倍。基于NCS的HSPL产生的光学复杂场可用于各种应用,例如超分辨率显微镜,纳米光刻,生物成像和传感,角动量检测器等。此外,结合合理的焦距的远场超聚焦,增强了近场强度可能会导致新型多功能芯片实验室设备的开发。

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