电压控制的全聚合物可重构光功率分配器

A. Rajandekar, R. Singhal
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引用次数: 3

摘要

提出了一种可重构的1 × N光分路器设计,该分路器可将输入光功率分流到器件的任意N个输出支路。假设三氰偏乙烯二苯基氨基苯(TCVDPA)掺杂SU-8电光聚合物为芯材,SU-8为下包层和上包层。通过级联1 × 2基本功率分配器可以实现高阶分裂。本文讨论了一种完全可重构的1 × 4光功率分配器。聚(3,4-乙烯二氧噻吩)-聚(stryene磺酸盐)(PEDOT:PSS)电极动态控制功率转移的方向。施加在电极上的电压决定了每个结的分裂比。该设计经过优化,以实现将所有入射光功率转移到单个输出节点。经过优化设计后,输出节点接收了约90%的输入功率。
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Voltage-controlled all-polymer reconfigurable optical power splitter
A reconfigurable optical 1 × N splitter design is proposed by which incoming optical power can be diverted to any of the N output branches of the device. Tri-cyano-vinylidene-di-phenyl-aminobenzene (TCVDPA) doped SU-8 electro optic polymer is assumed for core material with SU-8 as under and over-clad. Higher-order splitting can be achieved by cascading the 1 × 2 basic power splitter. This paper discuss 1 × 4 optical power splitter which is fully reconfigurable. The Poly(3,4-ethylenedioxythiophene)-Poly(stryene sulfonate) (PEDOT:PSS) electrodes dynamically control the direction in which the power will be diverted. The voltage applied to electrodes determines the splitting ratio at each junction. The design is optimized to achieve diversion of all incoming optical power to a single output node. The output node received around 90 % of incoming power after design optimization.
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