All-photonic SU-8 Variable Optical Attenuator

S. de Pedro, T. Ackermann, J. Plaza, Erica Alvarez, S. Buttgenbach, V. Cadarso, A. Llobera
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Abstract

A polymer-based Micro-optoelectromechanical system (MOEMS) design as a Variable Optical Attenuator (VOA) is presented. It consists on a SU-8 quad-beam structure containing a suspended waveguide aligned to input/output fiber optics. Actuation is achieved by defining photonic-heat transition regions at the anchoring of the mechanical beams. Such actuation points are manufactured by means of a dye-doped SU-8 with a strong absorption at specific wavelengths. When irradiated, the actuation points increase in size, entailing a displacement of the seismic mass, This causes 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 an excellent repeatability and a response time of 1 ms.
全光子SU-8可变光衰减器
提出了一种基于聚合物的可变光衰减器微光电系统(MOEMS)设计方案。它由一个SU-8四光束结构组成,其中包含一个与输入/输出光纤对齐的悬浮波导。通过在机械梁的锚定处定义光子-热过渡区来实现驱动。这种驱动点是通过在特定波长具有强吸收的染料掺杂SU-8制造的。当辐照时,致动点的尺寸增加,导致地震质量的位移,这导致波导和输入/输出光纤之间的不对准(即耦合损失的增加)。实验结果验证了这种方法,通过显示泵浦功率对光损耗的影响,具有良好的重复性和1 ms的响应时间。
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