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首页> 外文期刊>Optica applicata >Diminutive left-handed plasmonic nanoantenna-lens system in optical realm: ultraviolet emission and flat lens application
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Diminutive left-handed plasmonic nanoantenna-lens system in optical realm: ultraviolet emission and flat lens application

机译:光学领域左右左手等级纳米透镜系统:紫外线发射和扁平镜头应用

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摘要

In present paper, a tunable left-handed plasmonic nanoantenna is designed to attain ultraviolet emission through a second harmonic generation with a phase harmonic condition. For the devised structure, the dispersion properties and negative values of the magnetic permeability and the electric permittivity show that the designed structure is left-handed for the primary wave (red light) and right -handed for the second harmonic wave (ultraviolet light). The 3D finite-difference time-domain method is employed to reveal its nonpareil skills (i.e. immense left-handed transmission efficiency and far-field spectrum exhibiting directionality). Attained results by numerical calculation for the second harmonic generation are accomplished with finite-difference time-domain analysis. The impact of physical parameters on transmission and dispersion characteristics is also scrutinized. Furthermore, flat lens application for a red light region with a centered wavelength at lambda = 650 nm from the guileless design of LHM with no aberration is triumphed. Ultimately, a multifunction left-handed material is designed revealing tremendous potential to amass and abridge future applications in one architecture.
机译:在本文中,可调谐左旋等离子体纳米南非安静纳米NAANTENNA旨在通过具有相位谐波状态的二次谐波产生来实现紫外线发射。对于设计的结构,磁导率的分散性和负值和电介质,表明,设计的结构是用于初级波(红光)的左手,并且对于第二次谐波(紫外线)右侧。采用3D有限差分时间域方法来揭示其非维护技能(即巨大的左手传输效率和远场谱表现出方向性)。通过有限差分时域分析完成二次谐波生成的数值计算结果。物理参数对传输和色散特性的影响也被仔细审查。此外,从Lambda = 650nm处的具有居中波长的红色光区域的平面透镜施加来自LHM的无差距的无形设计。最终,设计了一种多功能左手材料,揭示了在一个架构中的混淆和缩小未来应用的巨大潜力。

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