A wireless W-band 3D-printed temperature sensor based on a three-dimensional photonic crystal operating beyond 1000 (∘)C

一种基于三维光子晶体的无线W波段3D打印温度传感器,工作温度超过1000℃

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Abstract

In addressing sensing in harsh and dynamic environments, there are no available millimeter-wave chipless and wireless sensors capable of continuous operation at extremely high temperatures. Here we present a fully dielectric wireless temperature sensor capable of operating beyond 1000 (∘)C. The sensor uses high-Q cavities embedded within a three-dimensional photonic crystal resonating at 83.5 GHz and 85.5 GHz, and a flattened Luneburg lens enhances its readout range. The sensor is additively manufactured using Lithography-based Ceramic Manufacturing in Alumina (Al(2)O(3)). Despite the clutter, its frequency-coded response remains detectable from outside the furnace at 50 cm and at temperatures up to 1200 (∘)C. It is observed that the resonance frequencies shift with temperature. This shift is linked to a change in the dielectric properties of Al(2)O(3), which are estimated up to 1200 (∘)C and show good agreement with literature values. The sensor is thus highly suitable for millimeter-wave applications in dynamic, cluttered, and high-temperature environments.

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