首页> 外文会议>EuCAP 2013;European Conference on Antennas and Propagation >Modeling Optical Nanontennas for Nonlinearity Enhancement, Polarization Control, Communications and Energy Harvesting Part 2
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Modeling Optical Nanontennas for Nonlinearity Enhancement, Polarization Control, Communications and Energy Harvesting Part 2

机译:用于非线性增强,极化控制,通信和能量收集部分的光学纳环建模

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We discuss the general use, potentials and computational challenges associated with optical nanoantennas. These engineered nanoparticles may be used to enhance and tailor the linear and nonlinear response of optical materials and they may realize novel optical devices for optical communications, computing, energy harvesting, sensing and polarization control. By translating some of the familiar radio-frequency concepts to optical antennas, we have proposed in recent years a variety of exciting possibilities for optical antennas, in order to realize nanodevices with linear and nonlinear properties not available in conventional optical materials and systems. We propose that collections of plasmonic nanoparticles may realize the true bridge between unconventional nanoscale optical processing and far-field propagation and radiation. In this talk, we describe the involved phenomena and the challenges and opportunities associated with their numerical modelling.
机译:我们讨论了与光学纳米南诺相关的一般使用,潜在和计算挑战。 这些工程化的纳米颗粒可用于增强和裁缝光学材料的线性和非线性响应,并且它们可以实现用于光通信,计算,能量收集,传感和偏振控制的新型光学装置。 通过将一些熟悉的射频概念转换为光天线,我们提出了近年来对光天线的各种令人兴奋的可能性,以实现具有在传统光学材料和系统中不可用的线性和非线性性能的纳米型。 我们提出了等离子体纳米颗粒的集合可以实现非传统纳米光学处理和远场传播和辐射之间的真正桥梁。 在这次谈话中,我们描述了与数值建模相关的涉及现象和挑战和机遇。

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