학술논문

Optical Fiber-Tip Heat Sensor Featuring a Multipositional Fabry–Pérot Cavity Resonator
Document Type
Conference
Source
2020 IEEE SENSORS SENSORS, 2020 IEEE. :1-4 Oct, 2020
Subject
Engineering Profession
General Topics for Engineers
Optical fibers
Optical fiber sensors
Mirrors
Optical resonators
Optical surface waves
Surface treatment
Temperature measurement
Fabry–Pérot
optical fiber sensors
two-photon polymerization
micromechanical system
thermal radiation sensors
Language
ISSN
2168-9229
Abstract
A Fabry–Pérot cavity (FPC) resonator featuring a multi-positional, hinged mirror monolithically fabricated by two-photon polymerization (2PP) is demonstrated as a temperature sensor. The hinged mirror enables both a concave optical surface and a gold, high-reflective (HR) coating to be integrated into a cavity less than 30 μm long. These features are known to improve the performance of the FPC resonator but could not be jointly realized with previous designs. The resonant wavelength of the device shifts in response to temperature changes, and a sensitivity of 0.191±0.007 /°C over approximately 22.2 – 50.6 °C is demonstrated. This represents only one application of the multi-positional mirror, which facilitates post-processing with directional deposition techniques.