Klimov Nikolai N, Mittal Sunil, Berger Michaela, Ahmed Zeeshan
Opt Lett. 2015 Sep 1;40(17):3934-6. doi: 10.1364/OL.40.003934.
Resistance thermometry is a time-tested method for taking temperature measurements. In recent years, fundamental limits to resistance-based approaches have spurred considerable interest in developing photonic temperature sensors as a viable alternative. In this study, we demonstrate that our photonic thermometer, which consists of a silicon waveguide integrated with a Bragg grating, can be used to measure temperature changes over the range of 5°C-160°C, with a combined expanded uncertainty [k=2, 95% confidence level] of 1.25°C. Computational modeling of the sensor predicts the resonance wavelength and effective refractive index within 4% of the measured value.
电阻测温法是一种经过时间考验的温度测量方法。近年来,基于电阻的方法的基本局限性激发了人们对开发光子温度传感器作为可行替代方案的浓厚兴趣。在本研究中,我们证明了我们的光子温度计,它由集成有布拉格光栅的硅波导组成,可用于测量5°C至160°C范围内的温度变化,合成扩展不确定度[k=2,95%置信水平]为1.25°C。传感器的计算模型预测的共振波长和有效折射率与测量值的偏差在4%以内。