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Two-Photon Polymerization and Applications in Plasmonics

机译:双光子聚合及其在等离子体中的应用

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摘要

Renewed and growing interest in the field of surface plasmon polaritons (SPPs) comes from a rapid advance of nanostructuring technologies. The desired nanostructures are usually fabricated by electron- or ion-beam lithography. An alternative approach is the application of two-photon polymerization (2PP) or nonlinear lithography. Both these technologies are based on nonlinear absorption of near-infrared femtosecond laser pulses. With 2PP, the fabrication of three-dimensional micro-objects and photonic crystals with a resolution down to 100 nm is possible. In this contribution, we study applications of advanced femtosecond laser technologies for the fabrication of SPP structures. We demonstrate that resulting structures can be used for excitation, guiding, and manipulation of SPPs on a subwavelength scale. Characterization of these structures is performed by detection of the plasmon leakage radiation (LR). 2PP allows the fabrication of dielectric waveguides, splitters, and couplers directly on metal surfaces. The fabricated dielectric structures are also very efficient for the excitation of SPPs. Using these structures, excitation and focusing of the resulting plasmon field can be achieved.
机译:纳米结构技术的迅速发展,使人们对表面等离激元极化子(SPPs)领域产生了越来越多的兴趣。所需的纳米结构通常通过电子束或离子束光刻来制造。一种替代方法是应用双光子聚合(2PP)或非线性光刻。这两种技术都是基于近红外飞秒激光脉冲的非线性吸收。借助2PP,可以制造分辨率低至100 nm的三维微物体和光子晶体。在这项贡献中,我们研究了先进飞秒激光技术在SPP结构制造中的应用。我们证明了所得的结构可用于激发,引导和操纵亚波长范围的SPP。这些结构的表征是通过检测等离子体激元泄漏辐射(LR)来进行的。 2PP允许直接在金属表面上制造介电波导,分离器和耦合器。所制造的介电结构对于激励SPP也是非常有效的。使用这些结构,可以实现对所得等离子体激元场的激发和聚焦。

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