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On-chip high ion sensitivity electrochromic nanophotonic light modulator

机译:芯片上的高离子敏感电致变色的纳米光子光调制器

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摘要

Since the discovery of electrochromism, the prospect of employing various electrochromic materials for smart window glass, variable reflectivity mirrors, and large-area displays has been the main drive for such an intriguing phenomenon. However, with advances in nanofabrication and the emergence of improved electrochromic materials offering reversible large changes in dielectric properties upon electrically induced redox reactions, the application strategies are starting to encompass the field of nanophotonics and nanoplasmonics. Herein, a novel strategy is proposed and demonstrated for offering both ultrahigh light modulation depth and high sensitivity ion detection in a single nanophotonic waveguiding platform. By using WO3 to ionically-drive dynamic light control via modulating the refractive index and the losses within the waveguide at ±1.5 V, ultrahigh optical modulation depth of 106, rapid response speed of <0.56 s, long cyclic life, and very sensitive Na+ ion detection ability in 1 mM–1 M concentration, are achieved within a volume of a few μm3. It is envisioned that our introduction of such a multifunctional electrochromic nanophotonic waveguide platform will stimulate and promote further efforts toward fundamental research on technologically promising on-chip integrated next-generation nanophotonic and nanoplasmonic devices for various niche applications.
机译:电镀铬的发现以来,采用各种电致变色的前景材料智能窗户玻璃,变量反射率镜,大面积显示这样一个有趣的主传动的现象。奈米制造和改进的出现电致变色的材料提供可逆大的介电性能的变化电诱导氧化还原反应应用程序策略开始包围纳米光子学领域和nanoplasmonics。在此,提出了一种新策略证明提供超高的光调制深度和高灵敏度离子检测在一个单一的纳米光子波导平台。通过调制折射率光控制和波导内的损失在±1.5 V,106年超高光学调制深度,迅速响应速度的< 0.56秒,循环寿命长Na +离子检测能力1非常敏感mm - 1 M浓度,实现在一个几个μ立方米的体积。引入这样一个多功能电致变色的纳米光子波导平台将刺激和促进进一步努力基础研究技术有前途芯片上集成下一代纳米光子和nanoplasmonic设备用于各种利基应用程序。

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