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Light radiation from surface plasmon polaritons in a structure of nanometal film on a subwavelength dielectric grating

机译:亚波长电介质光栅上纳米金属膜结构中表面等离激元极化子的光辐射

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摘要

A nanoscale light radiation source based on the diffraction radiation mechanism is proposed. In this mechanism, tunable and highly directional light emission from visible to ultraviolet frequency regime can be generated from surface plasmon polaritons (SPPs) excited by a moving electron beam above a nanometal film embedded on a subwavelength dielectric grating. The light emits in both the free-space and the dielectric substrate in specific directions. The radiation frequencies can be widely tuned by adjusting the beam energy or structure parameters. A remarkable enhancement (up to three orders of magnitude) of the radiation power density is found. The origin of the enhancement is the strong local field. Furthermore, an interesting physical phenomenon of radiation interference in the dielectric substrate is found. The physical origin of the interference is uncovered and discussed. With advances of miniature size, compatible on-chip integration, high power density, well directionality and wavelength tunability, our result has potential applications in electronic-photonic and nanophotonic systems as on-chip light sources, or in electron-emitter displays building into large-area array.
机译:提出了一种基于衍射辐射机理的纳米级光辐射源。在这种机制中,可以从表面等离激元极化子(SPP)产生可见光到紫外频率范围内的可调光和高度定向的光,该表面等离激元极化子由移动的电子束激发,该电子束位于亚波长电介质光栅上嵌入的纳米金属膜上方。光沿特定方向在自由空间和介电基板中均发出。辐射频率可以通过调整光束能量或结构参数来广泛调整。发现辐射功率密度显着提高(最多三个数量级)。增强功能的起源是强大的本地领域。此外,在介电基片中发现了有趣的辐射干扰物理现象。干扰的物理原因尚未发现和讨论。随着微型尺寸的进步,兼容的片上集成,高功率密度,良好的方向性和波长可调性,我们的结果在电子光子和纳米光子系统中作为片上光源或在大型电子发射器显示器中具有潜在的应用-area数组。

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