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Sensor platform based on packaged whispering-gallery-resonators

机译:基于包装的耳语画廊共振器的传感器平台

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Monitoring and controlling processes in industry, healthcare and environment encourage the demand and development of ultrasensitive sensors to detect physical and chemical analytes with very low concentrations. Optical methods based on resonant microstructures, that present high sensitivity, precision, selectivity, sensor lifetime and unit cost, are one of the most promising detection techniques. A fundamental limitation of optical microresonators is the realization of a reliable packaging approach that includes their readout element, e.g., tapered fibers. In this paper, the sensing response of packaged glass bottle microresonators have been demonstrated. Bottle-shaped structures support optical modes called whispering gallery modes along their curvature profile having a quality factor of 2.6×10~6 at 1550 nm in air. Two simple and robust packages fabricated by 3D printing and glass structuring methods were proposed for temperature and refractive index experiments. A temperature sensitivity of 9.9 pm/K in the range from 17.1°C to 22.5°C was obtained with a taper-coupled bottle system assembled into a plastic package. A similar value has been found when a bottle structure was mounted on a thermally-stable glass base and subjected to temperature changes from 18.6°C to 26.3°C. Both values were theoretically corroborated. For refractive index measurements, the fiber taper has been partially encapsulated employing a low refractive index glue. This provides a free-vibration package solution. Preliminary results show a refractive index sensitivity of 13 nm/RIU under a constant temperature of 22°C. The proposed fiber-coupled bottle package enables new possibilities for the development of practical WGM-based sensors.
机译:工业,医疗保健和环境中的监视和控制过程促使对超灵敏传感器的需求和发展,以检测浓度非常低的物理和化学分析物。基于共振微结构的光学方法具有很高的灵敏度,精度,选择性,传感器寿命和单位成本,是最有前途的检测技术之一。光学微谐振器的基本限制是实现一种可靠的封装方法,该方法包括其读出元件,例如锥形光纤。在本文中,已证明了包装的玻璃瓶微谐振器的感测响应。瓶形结构沿其曲率轮廓支持称为耳语画廊模式的光学模式,在空气中1550 nm处的质量因数为2.6×10〜6。提出了通过3D打印和玻璃结构化方法制造的两种简单而坚固的封装,用于温度和折射率实验。使用组装到塑料包装中的锥形耦合瓶系统,可获得在17.1°C至22.5°C范围内的9.9 pm / K的温度灵敏度。当将瓶子结构安装在热稳定的玻璃底座上并经受从18.6°C到26.3°C的温度变化时,发现了相似的值。这两个值在理论上都得到了证实。对于折射率测量,已使用低折射率胶将纤维锥度部分封装。这提供了自由振动的包装解决方案。初步结果显示,在22°C的恒定温度下,折射率灵敏度为13 nm / RIU。提出的光纤耦合瓶包装为基于WGM的实用传感器的开发提供了新的可能性。

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