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Stress-Induced 3D Chiral Fractal Metasurface for Enhanced and Stabilized Broadband Near-Field Optical Chirality

机译:应力诱导的3D手性分形亚表面增强和稳定的宽带近场光学手性

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摘要

Metasurfaces comprising 3D chiral structures have shown great potential in chiroptical applications such as chiral optical components and sensing. So far, the main challenges lie in the nanofabrication and the limited operational bandwidth. Homogeneous and localized broadband near-field optical chirality enhancement has not been achieved. Here, an effective nanofabrication method to create a 3D chiral metasurface with far- and near-field broadband chiroptical properties is demonstrated. A focused ion beam is used to cut and stretch nanowires into 3D Archimedean spirals from stacked films. The 3D Archimedean spiral is a self-similar chiral fractal structure sensitive to the chirality of light. The spiral exhibits far- and near-field broadband chiroptical responses from 2 to 8 mu m. With circularly polarized light (CPL), the spiral shows superior far-field transmission dissymmetry and handedness-dependent near-field localization. With linearly polarized excitation, homogeneous and highly enhanced broadband near-field optical chirality is generated at a stably localized position inside the spiral. The effective yet straightforward fabrication strategy allows easy fabrication of 3D chiral structures with superior broadband far-field chiroptical response as well as strongly enhanced and stably localized broadband near-field optical chirality. The reported method and chiral metasurface may find applications in broadband chiral optics and chiral sensing.
机译:包含3D手性结构的超表面在手性应用(例如手性光学组件和传感)中显示出巨大潜力。到目前为止,主要挑战在于纳米制造和有限的操作带宽。还没有实现同质和局部宽带近场光学手性增强。在此,展示了一种有效的纳米加工方法,该方法可创建具有远场和近场宽带手性的3D手性超表面。聚焦的离子束用于将纳米线从堆叠的薄膜切割并拉伸成3D阿基米德螺旋。 3D Archimedean螺旋是对光的手性敏感的自相似手性分形结构。螺旋线显示了从2到8μm的远场和近场宽带整脊响应。使用圆偏振光(CPL)时,螺旋线显示出优异的远场透射不对称性和与手性有关的近场定位。通过线性偏振激发,在螺旋内部的稳定位置会产生均匀且高度增强的宽带近场光学手征。有效而简单的制造策略可轻松制造具有出色的宽带远场手性响应以及强大增强且稳定定位的宽带近场光学手性的3D手性结构。报道的方法和手性超颖表面可能会在宽带手性光学和手性传感中找到应用。

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