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PDMS-based, magnetically actuated variable optical attenuators obtained by soft lithography and inkjet printing technologies

机译:通过软光刻和喷墨印刷技术获得的基于PDMS的磁致可变光学衰减器

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摘要

This paper reports and compares the implementation of magnetic variable optical attenuators (M-VOA) by two fabrication strategies. In the first case, a two-layer structure containing a non-doped polydimethylsiloxane(PDMS) layer on a magnetic PDMS (M-PDMS) layer is fabricated by soft lithography (SLT). M-PDMS is obtained by doping PDMS with different ferrofluid (FF) volumes. The second technology consists of selectively dispense FF microdroplets using the inkjet printing technique (IJP) on a non-doped, non-cured PDMS structure, previously defined by SLT. In this second case, FF volumes are encapsulated inside the polymer matrix. The optical and mechanical properties of structures fabricated using both strategies and containing similar ferrofluid amounts are compared.
机译:本文报告并比较了两种制造策略的磁可变光衰减器(M-VOA)的实现。在第一种情况下,通过软光刻(SLT)来制造在磁性PDMS(M-PDMS)层上包含非掺杂聚二甲基硅氧烷(PDMS)层的两层结构。 M-PDMS是通过用不同铁磁流体(FF)体积掺杂PDMS来获得的。第二种技术包括使用喷墨打印技术(IJP)在先前由SLT定义的非掺杂,非固化PDMS结构上选择性分配FF微滴。在第二种情况下,FF体积被封装在聚合物基体内。比较了使用两种策略制造并包含相似铁磁流体量的结构的光学和机械性能。

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