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Fabrication of plasmonic crystals using programmable nanoreplica molding process

机译:使用可编程的纳米复制品成型工艺制造等离子体晶体

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The development of many photonic devices, such as photonic integrated circuit, optical sensors, and photovoltaic devices, demands low-cost and reliable fabrication technologies to fabricate sub-wavelength features. Here, we report a programmable nanoreplica molding process, which is capable of producing photonic devices with a variety of sub-micrometer patterns. The process utilizes a stretchable plastic mold to generate the desired periodic pattern using a UV-curable polymer on plastic substrates. During the replica molding process, a uniaxial force is applied to the mold and results in changes of the periodic structure, which locates on the surface of the mold. The geometry of the replicated pattern, including the lattice constant and arrangement, is determined by the magnitude and direction of the force. As an example, we present a plasmonic crystal device with surface plasmon resonances carefully tuned by using the uniaxial force. This unique process offers an inexpensive route to generate various periodic nanostructures rapidly.
机译:许多光子器件的发展,例如光子集成电路,光学传感器和光伏器件,需要低成本和可靠的制造技术来制造亚波长特征。在这里,我们报告了一种可编程的纳米复制品成型工艺,该工艺能够生产具有多种亚微米图案的光子器件。该方法利用可拉伸的塑料模具在塑料基板上使用可紫外线固化的聚合物来生成所需的周期性图案。在复制品成型过程中,单轴力会施加到模具上,并导致周期性结构发生变化,该周期性结构位于模具表面上。复制图案的几何形状(包括晶格常数和排列)由力的大小和方向确定。作为示例,我们提出了一种通过使用单轴力仔细调整了表面等离子体共振的等离子体晶体器件。这种独特的工艺提供了一种廉价的途径来快速生成各种周期性的纳米结构。

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