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Optical properties of biaxial nanopatterned gold plasmonic nanowired grid polarizer

机译:双轴纳米图案金等离子体纳米网格偏振器的光学特性

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摘要

Gold nanoparticles deposited on self-organized nano-ripple quartz substrates have been studied by spectroscopic Mueller matrix ellipsometry. The surface was found to have biaxial anisotropic optical properties. For electric field components normal to the ripples the periodic and disconnected nature of the in plane nanowires gives rise to an optical response dominated by the localized plasmon resonance. In the direction parallel to the ripples the gold nanoparticles are aligned closely leading to localized plasmon resonances in the infrared. As Au was deposited at an angle oblique to the surface normal, the gold nanoparticles were formed on the side of the ripples facing the incoming evaporation flux. This makes the gold particles slightly inclined, correspondingly the principal coordinate system of the biaxial dielectric tensor results tilted. The anisotropic plasmonic optical response results in a strong polarizing effect, making it suitable as a plasmonic nanowired grid polarizer.
机译:通过光谱橡胶壳基质椭圆形研究,已经研究了沉积在自组织纳米波纹石英底物上的金纳米颗粒。发现表面具有双轴各向异性光学性质。对于涟漪正常的电场分量,平面纳米线的周期性和断开性质产生由局部等离子体共振导列的光学响应。在平行于涟漪的方向上,金纳米颗粒紧密地对齐,导致红外线中的局部等离子体共振。随着Au在表面正常的角度倾倒,在面向入射蒸发通量的涟漪侧形成金纳米颗粒。这使得金颗粒略微倾斜,相应地倾斜的双轴介电张量结果的主坐标系。各向异性等离子石光学响应导致强偏振效应,使其适合作为等离子体纳米线栅极偏振器。

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