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Optical Planar Waveguide Sensor with Integrated Digitally-Printed Light Coupling-in and Readout Elements

机译:集成数字印刷光耦合和读出元件的光学平面波导传感器

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摘要

Optical planar waveguide sensors, able to detect and process information from the environment in a fast, cost-effective, and remote fashion, are of great interest currently in different application areas including security, metrology, automotive, aerospace, consumer electronics, energy, environment, or health. Integration of networks of these systems together with other optical elements, such as light sources, readout, or detection systems, in a planar waveguide geometry is greatly demanded towards more compact, portable, and versatile sensing platforms. Herein, we report an optical temperature sensor with a planar waveguide architecture integrating inkjet-printed luminescent light coupling-in and readout elements with matched emission and excitation. The first luminescent element, when illuminated with light in its absorption band, emits light that is partially coupled into the propagation modes of the planar waveguide. Remote excitation of this element can be performed without the need for special alignment of the light source. A thermoresponsive liquid crystal-based film regulates the amount of light coupled out from the planar waveguide at the sensing location. The second luminescent element partly absorbs the waveguided light that reaches its location and emits at longer wavelengths, serving as a temperature readout element through luminescence intensity measurements. Overall, the ability of inkjet technology to digitally print luminescent elements demonstrates great potential for the integration and miniaturization of light coupling-in and readout elements in optical planar waveguide sensing platforms.
机译:能够以快速,经济高效和远程的方式检测和处理来自环境的信息的光学平面波导传感器,目前在包括安全性,计量,汽车,航空航天,消费电子,能源,环境在内的不同应用领域中引起了极大的兴趣。或健康。迫切需要将这些系统的网络与其他光学元件(例如光源,读数或检测系统)以平面波导几何形状集成在一起,以实现更紧凑,便携式和多功能的传感平台。在本文中,我们报告了一种具有平面波导架构的光学温度传感器,该架构集成了喷墨打印的耦合和读出元件以及匹配的发射和激发的发光光。当第一发光元件被其吸收带中的光照射时,其发射的光部分地耦合到平面波导的传播模式中。无需特殊对准光源即可执行该元件的远程激发。基于液晶的热响应膜调节从感测位置处的平面波导耦合出的光量。第二发光元件部分地吸收到达其位置并以更长的波长发射的波导光,其通过发光强度测量用作温度读出元件。总体而言,喷墨技术数字印刷发光元件的能力证明了在光学平面波导传感平台中集成和小型化光耦合输入和读出元件的巨大潜力。

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