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All-polymer optothermal-actuated MOEMS variable optical attenuator

机译:全聚合物光致动MOEMS可变光衰减器

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This paper presents the design, fabrication and characterization of all-optical polymer-based Micro-optoelectromechanical system (MOEMS) Variable Optical Attenuator (VOA). It consists of an SU-8 quad-beam structure and a suspended waveguide aligned to input/output fiber optics. Actuation is achieved by defining dye-doped SU-8 structures on the mechanical beams. Specific wavelengths focused on such structures have a strong absorption resulting in a heating and, straightforwardly, an expansion of the dye-doped SU-8. This entails a displacement of the seismic mass causing a misalignment (i.e. an increase of the coupling losses) between the waveguides and the input/output fiber optics. Experimental results have validated this approach, by showing the effect of the pumping power on the optical losses, with a slope of 0.17 dB/mW.
机译:本文介绍了基于全光聚合物的微光机电系统(MOEMS)可变光衰减器(VOA)的设计,制造和表征。它由SU-8四光束结构和与输入/输出光纤对准的悬挂式波导组成。通过在机械梁上定义染料掺杂的SU-8结构来实现驱动。聚焦在这种结构上的特定波长具有很强的吸收性,从而导致加热,并且直接导致掺杂染料的SU-8膨胀。这需要地震物质的位移,从而引起波导和输入/输出光纤之间的未对准(即,耦合损耗的增加)。实验结果通过显示泵浦功率对光损耗的影响以0.17 dB / mW的斜率验证了这种方法。

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