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Anisotropic in-plane conductivity and dichroic gold plasmon resonance in plasma assisted ITO thin films e-beam evaporated at oblique angles

机译:等离子辅助ITO薄膜电子束在倾斜角度蒸发时的各向异性平面内电导率和二向色性金等离子共振

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摘要

ITO thin films have been prepared by electron beam evaporation at oblique angles (OA), directly and while assisting their growth with a downstream plasma. The films microstructure, characterized by scanning electron microscopy, atomic force microscopy and glancing incidence small angle X-ray scattering, consisted of tilted and separated nanostructures. In the plasma2assisted films, the tilting angle decreased and the nanocolumns became associated in the form of bundles along the direction perpendicular to the flux of evaporated material. The annealed films presented different in-depth and sheet resistivity as confirmed by scanning conductivity measurements taken for the individual nanocolumns. In addition, for the plasma assisted thin films, two different sheet resistance values were determined by measuring along the nanocolumn bundles or along the perpendicular direction. This in-plane anisotropy induces the electrochemical deposition of elongated gold nanostructures. The obtained Au-ITO composite thin films were characterized by anisotropic plasmon resonance absorption and a dichroic behavior when examined with linearly polarized light.
机译:ITO薄膜是通过直接以倾斜角(OA)进行电子束蒸发并同时借助下游等离子体辅助其生长来制备的。薄膜的微观结构由扫描电子显微镜,原子力显微镜和掠入射小角度X射线散射表征,由倾斜和分离的纳米结构组成。在等离子辅助膜中,倾斜角减小,并且纳米柱沿着垂直于蒸发材料通量的方向以束的形式结合在一起。退火后的薄膜呈现出不同的深度和薄层电阻率,这是通过对各个纳米柱进行的扫描电导率测量来证实的。另外,对于等离子体辅助薄膜,通过沿着纳米柱束或沿着垂直方向进行测量来确定两个不同的薄层电阻值。这种面内各向异性引起细长金纳米结构的电化学沉积。当用线性偏振光检查时,获得的Au-ITO复合薄膜的特征在于各向异性等离子体激元共振吸收和二向色性。

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