Roldán-Varona Pablo, Pérez-Herrera Rosa Ana, Rodríguez-Cobo Luis, Reyes-González Luis, López-Amo Manuel, López-Higuera José Miguel
Photonics Engineering Group, University of Cantabria, 39005, Santander, Spain.
Instituto de Investigación Sanitaria Valdecilla (IDIVAL), 39011, Santander, Spain.
Sci Rep. 2021 Feb 4;11(1):3039. doi: 10.1038/s41598-021-82193-5.
In this work, a novel optical fiber sensor capable of measuring both the liquid level and its refractive index is designed, manufactured and demonstrated through simulations and experimentally. For this, a silica capillary hollow-core fiber is used. The fiber, with a sensing length of 1.55 mm, has been processed with a femtosecond laser, so that it incorporates four holes in its structure. In this way, the liquid enters the air core, and it is possible to perform the sensing through the Fabry-Perot cavities that the liquid generates. The detection mode is in reflection. With a resolution of 4 μm (liquid level), it is in the state of the art of this type of sensor. The system is designed so that in the future it will be capable of measuring the level of immiscible liquids, that is, liquids that form stratified layers. It can be useful to determine the presence of impurities in tanks.
在这项工作中,设计、制造了一种新型的能够同时测量液位及其折射率的光纤传感器,并通过模拟和实验进行了演示。为此,使用了二氧化硅毛细管空心光纤。该光纤的传感长度为1.55毫米,已用飞秒激光进行了处理,使其结构中包含四个孔。通过这种方式,液体进入空气芯,可以通过液体产生的法布里-珀罗腔进行传感。检测模式为反射式。其液位分辨率为4微米,处于这类传感器的先进水平。该系统的设计使其未来能够测量不混溶液体的液位,即形成分层的液体。这对于确定储罐中杂质的存在可能会很有用。