Thermo-optic variable attenuator/waveplate based on waveguides patterned on organic-inorganic hybrids

C. Vicente, C. Freitas, P. Marques, S. F. Correia, P. P. Lima, L. Carlos, P. André, R. Ferreira
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引用次数: 4

Abstract

This work reports a variable attenuator/waveplate based on thermo-optic (TO) effect induced on a waveguide patterned by direct UV-laser writing on films of organic-inorganic di-ureasil hybrids. The waveguide temperature was tuned inducing phase retardation between the transverse electric (TE) and transverse magnetic (TM) modes, resulting in a controllable waveplate. Furthermore, the waveguide TO actuation allows obtaining a variable optical attenuator. The relevant properties, such as attenuation, polarization dependence of the thermal actuation and power consumption will be presented in the NIR (1550 nm). The required electrical power and temperature variation to attain the optical signal extinction and the retardation phase of π/2 were estimated.
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基于有机-无机杂化波导的热光可变衰减器/波片
本文报道了一种基于热光效应的可变衰减器/波片,这种效应是由紫外激光直接写入有机-无机双脲杂化膜上的波导引起的。通过调节波导温度,诱导横向电(TE)和横向磁(TM)模式之间的相位延迟,形成可控波片。此外,波导TO驱动允许获得可变光衰减器。热致动的相关特性,如衰减、偏振依赖性和功耗将在近红外(1550 nm)中呈现。估计了实现光信号消光和π/2延迟相位所需的电功率和温度变化。
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