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LOW-LOSS, HIGH PERFORMANCE HYBRID PHOTONICS DEVICES ENABLED BY ION-EXCHANGED GLASS WAVEGUIDES

机译:离子交换玻璃波导实现的低损耗,高性能混合光子器件

摘要

Robust ion-exchanged glass waveguides exhibit low optical losses in a broad spectral range and they allow integration of several devices on the same chip due to their planar structure. Consequently, they can be a low cost alternative to semiconductors for fabricating various integrated optical devices. Two high performance photonic devices were designed and realized, demonstrating the potential of glass waveguides. The well-controlled silver-film ion-exchange process allowed the fabrication of: i) a highly sensitive biosensor based on optical absorption and, ii) a low loss hybrid electro-optic (EO) polymer modulator with a narrow coplanar electrode gap. The single-mode, channel integrated optical ion-exchange waveguide on borosilicate glass (Corning 0211) is described for broad spectral band (400-650 nm) detection and analysis of heme-containing protein films at a glass/water interface. The evanescent wave interaction is improved significantly by fabricating ion-exchange waveguides with a step-like index profile. Silver nano-particle formation is reduced in order to achieve low loss in the Soret-band (~400 nm). Unlike other surface-specific techniques (e.g. SPR, interferometry) that probe local refractive-index changes and therefore are susceptible to temperature fluctuations, the integrated optical waveguide absorption technique probes molecular-specific transition bands and is expected to be less vulnerable to environmental perturbations. The hybrid integration of phosphate glass (IOG-1) and EO polymer is realized for the first time. The critical alignment steps which are typically required for hybrid optoelectronic devices are eliminated with a simple alignment-free fabrication technique. The low loss adiabatic transition from glass to EO polymer waveguide is enabled by gray scale patterning of the novel EO polymer, AJLY. Total insertion loss of 5 dB and electrode gap of 8 μm is obtained for an optimized device design. EO polymer poling at 135 ºC and 75 V/μm is enabled by the sol-gel buffer layer.
机译:坚固的离子交换玻璃波导在很宽的光谱范围内表现出较低的光学损耗,并且由于其平面结构,它们允许将多个器件集成在同一芯片上。因此,它们可以是制造各种集成光学器件的半导体的低成本替代品。设计并实现了两种高性能的光子器件,展示了玻璃波导的潜力。受到良好控制的银膜离子交换工艺可以制造:i)基于光吸收的高灵敏度生物传感器,以及ii)具有窄共面电极间隙的低损耗混合电光(EO)聚合物调制器。描述了硼硅酸盐玻璃(Corning 0211)上的单模,通道集成光学离子交换波导,用于宽光谱带(400-650 nm)检测和分析玻璃/水界面处的含血红素的蛋白膜。通过制造具有阶梯状折射率分布的离子交换波导,可以大大改善e逝波的相互作用。减少银纳米粒子的形成,以便在Soret波段(〜400 nm)中实现低损耗。与探测局部折射率变化并因此易受温度波动影响的其他表面特定技术(例如SPR,干涉测量法)不同,集成的光波导吸收技术可探测分子特定的跃迁带,并有望减少对环境扰动的影响。首次实现了磷酸盐玻璃(IOG-1)和EO聚合物的混合集成。混合光电器件通常需要的关键对准步骤可以通过简单的无对准制造技术来消除。从玻璃到EO聚合物波导的低损耗绝热过渡是通过新型EO聚合物AJLY的灰度图案化实现的。优化的器件设计可获得5 dB的总插入损耗和8μm的电极间隙。溶胶-凝胶缓冲层使EO聚合物在135ºC和75 V /μm下极化。

著录项

  • 作者

    Araci Ismail E.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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