首页> 外文会议>Conference on Plasmonics in Biology and Medicine >Self-similarity in azimuthal Walsh filters and corresponding far-field diffraction characteristics : a unique study to control tightly focused fields and coupling of light into metamaterials, plasmonic structure and waveguides
【24h】

Self-similarity in azimuthal Walsh filters and corresponding far-field diffraction characteristics : a unique study to control tightly focused fields and coupling of light into metamaterials, plasmonic structure and waveguides

机译:方位角沃尔什滤波器的自相似性和相应的远场衍射特性:一项独特的研究,用于控制紧密聚焦的场并将光耦合到超材料,等离激元结构和波导中

获取原文

摘要

In this paper, we propose illumination beam shaping using azimuthal Walsh filters derived from azimuthal Walsh functions, in and around the focal plane of a rotationally symmetric imaging system and studied for finding out self-similar groups and sub-groups for different orders to examine self-similarity existing between them and their corresponding transverse intensity distributions at the far-field plane. The unique rotational self-similarities observed in 2D intensity distributions at the transverse far-field plane for adjacent orders of azimuthal Walsh filters are also presented. Practical implementations of these filters are achievable by the availability of high speed spatial light modulators (SLMs) which can be successfully used to code and control illumination in and around the tightly focused field and coupling of light into metamaterials, plasmonic structures and waveguides. Further scope of research is intended to develop a new photonics platform based on dielectric surface wave harvesting model controlled by the dynamically variable illumination using azimuthal Walsh filters. Surface waves such as Bloch Surface Waves (BSW) and Surface Plasmons (SP) can be considered as the future enabling tools using this concept for probable applications in Photonics Research as well as in Industrial sectors, namely, quantum optics, telecom, sensing, computing, security, imaging and medical applications.
机译:在本文中,我们提出在旋转对称成像系统的焦平面内和周围,使用从方位角沃尔什函数导出的方位角沃尔什滤波器对照明光束进行整形,并进行研究以找出不同阶次的自相似组和子组以检查自身。它们和它们在远场平面上的相应横向强度分布之间存在相似性。还介绍了在2D强度分布中在横向远场平面上观察到相邻阶的Walsh方位滤波器的独特旋转自相似性。这些滤波器的实际实现可以通过使用高速空间光调制器(SLM)来实现,该空间调制器可以成功地用于编码和控制紧密聚焦场内和周围的照明,以及将光耦合到超材料,等离激元结构和波导中。进一步的研究范围旨在开发一种基于介电表面波收集模型的新型光子学平台,该模型由使用方位角Walsh滤波器的动态可变照明控制。诸如Bloch表面波(BSW)和表面等离激元(SP)之类的表面波可以被认为是使用该概念的未来工具,可用于光子学研究以及工业领域,例如量子光学,电信,传感,计算,安全性,影像和医疗应用。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号