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Fabrication of Soft-Glass-Based Wire Array Metamaterial Fibers for Applications at Infrared Frequencies

机译:基于软玻璃的线阵列超材料纤维的红外频率应用

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Metamaterials for the mid-infrared spectrum require subwavelength meta-structures with dimensions of a few hundreds of nanometers. Fabrication via fiber drawing is challenging as the Plateau-Rayleigh instability caused by interfacial surface tension between the liquid metal and the dielectric during the drawing leads to fluctuation of the structure, preventing drawing of uniform wire array structures with such dimensions. Here, conventional fiber drawing technique is employed in the fabrication of wire array metamaterial fibers containing tin wires embedded in soda-lime glass. Plateau-Rayleigh instabilities ensuing detrimental deformations on submicron metallic structures are minimized through the selection of materials with favorable rheological properties and the optimization of the drawing parameters. Uniform wire array structures with wire diameter and spacing as small as 143 and 286 nm, respectively, are demonstrated. The application of this established fabrication process represents a large-volume and low-cost alternative for the production of hyperbolic metamaterials. The new metamaterial fibers achieved open up a range of exciting applications at mid-infrared frequencies, such as lifetime engineering and super-resolution imaging.
机译:用于中红外光谱的超材料需要具有几百纳米尺寸的亚波长超结构。由于在拉伸过程中由液态金属和电介质之间的界面表面张力引起的Plateau-Rayleigh不稳定性会导致结构波动,从而阻止了具有此类尺寸的均匀线阵列结构的拉伸,因此通过光纤拉伸进行制造具有挑战性。这里,在包含埋入钠钙玻璃中的锡线的线阵列超材料纤维的制造中,采用了传统的纤维拉伸技术。通过选择具有良好流变性能的材料和优化拉伸参数,可以将在亚微米金属结构上产生有害变形的高原-瑞利不稳定性降至最低。展示了线径和间距分别小至143和286 nm的均匀线阵列结构。这种既定的制造工艺的应用代表了双曲线超材料的大批量,低成本替代品。新型超材料纤维在中红外频率上实现了一系列激动人心的应用,例如寿命工程和超分辨率成像。

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