Fraunhofer Institute for Reliability and Microintegration, Gustav-Meyer-Allee 25, 13355 Berlin, Germany.
Sensors (Basel). 2018 Dec 7;18(12):4321. doi: 10.3390/s18124321.
Whispering gallery mode (WGM) glass bottle microresonators are potential highly sensitive structures for a variety of physical and bio-chemical sensing applications. In this paper, we experimentally demonstrate the practical use of glass bottle resonators as temperature sensors. The basic parameters, such as WGM resonance wavelengths, free spectral ranges, and factors, have been investigated by coupling light from a tapered fiber to the bottle structure. We show the spectral characteristics of the WGMs by choosing different bottle dimensions and taper diameters. For practical measurements, a robust 3D-printed package that includes the bottle resonator and the tapered fiber has been proposed. The packaged bottle has a central diameter D = 207 µm and a length L = 300 µm. Temperature sensing experiments were also performed. A linear response of the WGM shifts as a function of the temperature is confirmed. The fitted experimental data indicate a temperature sensitivity of 10.5 pm/K at λ ~ 1550 nm, resulting in a limit of detection of 0.06 K. These values can be compared with values reported for other WGM resonators. Additionally, bottle resonators are made with simple splicing methods and their assembly method can be easily defined due to large coupling tolerances.
whispering gallery mode (WGM) 玻璃瓶微谐振器是各种物理和生物化学传感应用的潜在高灵敏度结构。在本文中,我们通过将光纤耦合到瓶状结构中,实验证明了玻璃瓶谐振器作为温度传感器的实际用途。通过选择不同的瓶尺寸和锥形光纤直径,研究了 WGM 共振波长、自由光谱范围和 Q 因子等基本参数。我们展示了 WGM 的光谱特性。为了进行实际测量,提出了一种包括瓶状谐振器和锥形光纤的坚固的 3D 打印封装。封装后的瓶状谐振器的中心直径 D = 207 µm,长度 L = 300 µm。还进行了温度传感实验。证实了 WGM 频移作为温度函数的线性响应。拟合的实验数据表明,在 λ~1550nm 处的温度灵敏度为 10.5 pm/K,检测限为 0.06K。这些值可以与其他 WGM 谐振器的报告值进行比较。此外,瓶状谐振器采用简单的拼接方法制造,并且由于大的耦合容差,其组装方法可以轻松定义。