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Low-cost fabrication of optical waveguides, interconnects and sensing structures on all-polymer-based thin foils

机译:在全聚合物基薄箔上低成本制造光波导,互连件和传感结构

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摘要

Micro-optical sensors based on optical waveguides are widely used to measure temperature, force and strain but also to detect biological and chemical substances such as explosives or toxins. While optical micro-sensors based on silicon technology require complex and expensive process technologies, a new generation of sensors based completely on polymers offer advantages especially in terms of low-cost and fast production techniques. We have developed a process to integrate micro-optical components such as embedded waveguides and optical interconnects into polymer foils with a thickness well below one millimeter. To enable high throughput production, we employ hot embossing technology, which is capable of reel-to-reel fabrication with a surface roughness in the optical range. For the waveguide fabrication, we used the thermoplastic polymethylmethacrylate (PMMA) as cladding and several optical adhesives as core materials. The waveguides are characterized with respect to refractive indices and propagation losses. We achieved propagation losses are as low as 0.3 dB/cm. Furthermore, we demonstrate coupling structures and their fabrication especially suited to integrate various light sources such as vertical-cavity surface-emitting lasers (VCSEL) and organic light emitting diodes (OLED) into thin polymer foils. Also, we present a concept of an all-polymer and waveguide based deformation sensor based on intensity modulation, which can be fabricated by utilizing our process. For future application, we aim at a low-cost and high-throughput reel-to-reel production process enabling the fabrication of large sensor arrays or disposable single-use sensing structures, which will open optical sensing to a large variety of application fields ranging from medical diagnosis to automotive sensing. © 2016 SPIE.
机译:基于光波导的微光学传感器被广泛用于测量温度,力和应变,还可以检测诸如炸药或毒素之类的生物和化学物质。尽管基于硅技术的光学微传感器需要复杂且昂贵的工艺技术,但完全基于聚合物的新一代传感器仍具有优势,特别是在低成本和快速生产技术方面。我们已经开发出一种将诸如嵌入式波导和光学互连之类的微光学组件集成到厚度不到1毫米的聚合物箔中的工艺。为了实现高产量生产,我们采用了热压花技术,该技术能够以光学范围内的表面粗糙度进行卷到卷制造。对于波导制造,我们使用热塑性聚甲基丙烯酸甲酯(PMMA)作为包层,并使用几种光学粘合剂作为芯材。相对于折射率和传播损耗来表征波导。我们实现了传播损耗低至0.3 dB / cm。此外,我们展示了耦合结构及其制造,特别适合将各种光源(例如垂直腔表面发射激光器(VCSEL)和有机发光二极管(OLED))集成到薄聚合物箔中。此外,我们提出了一种基于强度调制的基于全聚合物和波导的变形传感器的概念,该传感器可以利用我们的工艺来制造。对于未来的应用,我们的目标是低成本,高吞吐量的卷到卷生产过程,从而能够制造大型传感器阵列或一次性使用的一次性传感结构,这将为广泛的应用领域打开光学传感领域。从医学诊断到汽车传感。 ©2016 SPIE。

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