首页> 外文会议>Conference on Laser-based Micro- and Nanopackaging and Assembly; 20080122-24; San Jose,CA(US) >Beam shaping effects in two photon polymerization of hybrid material systems
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Beam shaping effects in two photon polymerization of hybrid material systems

机译:杂化材料体系中两种光子聚合中的光束整形效应

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Two-photon polymerization (2PP) is now an established technique for nanofabrication. Conventional fabrication processes using laser 2PP commonly use a single point beam delivery system in order to write artifacts in the volume of a resin. Complex shapes such as micro-models, woodpile photonic structures and spiral structures have been realized in several material systems including, sol-gels, organically modified ceramics and resins. One area of current interest in 2PP micro fabrication is the introduction of more complex beam delivery systems, aimed at introducing a degree of parallel processing to the writing method. In this paper we describe two alternative parallel processing approaches to beam delivery that demonstrate the use of diffractive and refractive optics to shape the laser before focusing. Firstly a Fraunhofer diffractive optical element to generate a linear array of 4 spots of equal intensity thus writing four structures simultaneously. Secondly an axicon lens is used to form an annulus in the focal plane of the focusing element. This enables complete three dimensional annular structure fabrication without the use of scanning stages. For all experiments, a Ti:sapphire laser was used to initiate 2PP microfabrication. The materials system used was a Zr/PMMA hybrid prepared by the sol-gel method on a glass substrate.
机译:现在,双光子聚合(2PP)是一种用于纳米加工的成熟技术。使用激光2PP的常规制造工艺通常使用单点光束传输系统,以便将假象写入树脂的体积中。复杂的形状,例如微模型,木桩光子结构和螺旋结构,已经在几种材料系统中实现,包括溶胶-凝胶,有机改性的陶瓷和树脂。 2PP微制造中当前关注的一个领域是引入更复杂的光束传输系统,旨在将一定程度的并行处理引入写入方法。在本文中,我们描述了光束传输的两种并行处理方法,这些方法演示了在聚焦之前使用衍射和折射光学对激光器进行整形的方法。首先,弗劳恩霍夫(Fraunhofer)衍射光学元件产生具有相同强度的4个光斑的线性阵列,从而同时写入四个结构。其次,轴锥透镜用于在聚焦元件的焦平面上形成环面。这使得能够完成完整的三维环形结构制造而无需使用扫描台。对于所有实验,均使用Ti:蓝宝石激光器来启动2PP微型制造。使用的材料系统是通过溶胶-凝胶法在玻璃基板上制备的Zr / PMMA杂化物。

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