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The chiral coating on an achiral nanostructure by the secondary effect in focused ion beam induced deposition

机译:聚焦离子束诱导沉积中二次效应在非手性纳米结构上的手性涂层

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Optical metamaterials are widely used in electromagnetic wave modulation due to their sub-wavelength feature sizes. In this paper, a method to plate an achiral nanopillar array with chiral coating by the secondary effect in focused ion beam induced deposition is proposed. Guided by the pattern defined in a bitmap with variable residence time, the beam scan strategy suppresses the interaction between adjacent nanostructures. A uniform chiral coating is formed on the target nanostructure without affecting the adjacent nanostructure, under carefully selected beam parameters and the rotation angle of the sample stage. Energy dispersive x-ray spectroscopy results show that the chiral film has high purity metal, which enables the generation of localized surface plasmon resonances and causes the circular dichroism (CD) under circularly polarized light illumination. Finally, the tailorable CD spectrum of the coated array is verified by the finite difference time domain method.
机译:光学超材料因其亚波长特征尺寸而广泛用于电磁波调制。该文提出了一种在聚焦离子束诱导沉积中利用二次效应镀层手性涂层的手性纳米柱阵列的方法。在具有可变停留时间的位图中定义的图案的指导下,光束扫描策略抑制了相邻纳米结构之间的相互作用。在精心选择的光束参数和样品台的旋转角度下,在不影响相邻纳米结构的情况下,在目标纳米结构上形成均匀的手性涂层。能量色散X射线光谱结果表明,手性薄膜具有高纯度的金属,在圆偏振光照射下能够产生局域表面等离子体共振,并引起圆二色性(CD)。最后,采用时域有限差分法验证了镀膜阵列的可定制CD谱。

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