...
首页> 外文期刊>Optics and Lasers in Engineering >Highly-sensitive phase-interrogated RI sensor based on twin-core fiber with inherent noise suppression
【24h】

Highly-sensitive phase-interrogated RI sensor based on twin-core fiber with inherent noise suppression

机译:基于双芯光纤的高灵敏度相位询问式RI传感器,具有固有的噪声抑制功能

获取原文
获取原文并翻译 | 示例
           

摘要

In this work, we propose a highly-sensitive phase-interrogated RI sensor based on twin-core fiber with inherent noise suppression. This is the first time that optical fiber sensing structure is combined with digital holography technology, which works as the phase interrogation method, for measuring environmental parameters. The proposed system consists of a Mach-Zehnder interferometer formed by interference between the reference Gauss beam and the sensing dual-beam from the twin-core fiber (TCF). In the sensing optical path, a non-core fiber (NCF) and TCF offset splicing structure works as the differential fluid RI sensing element, which provides the capability of suppressing background signal by calculating the phase difference between the two cores of the TCF. This simple and practical phase subtraction method realizes direct background subtraction within a single measurement and reduces the background signal to 1/25 of the original noise level. The fluid is continuously introduced into a fluid tube in which the sensing fiber is installed to realize in-line measurement of fluid RI. Experimental results show that a short response time of about 13 s and a high sensitivity of about 835 rad/refractive index unit (RIU) are obtained. The high sensitivity benefits from direct interaction between light path and fluid, which is about 47 times higher than the sensitivity of a refractive index plasmonic sensor realized by enabling its quadrupole resonance in phase interrogation (17.46 rad/RIU). This scheme will fmd many applications in little sample consumption and high sensitivity required analytical measurement owing to its merits of high sensitivity, little sample consumption, fast response, and inherent background noise suppression.
机译:在这项工作中,我们提出了一种基于双芯光纤且具有固有噪声抑制功能的高灵敏度相位询问RI传感器。这是光纤传感结构首次与数字全息技术相结合,该技术用作相位询问方法,用于测量环境参数。拟议的系统由一个Mach-Zehnder干涉仪组成,该干涉仪是由参考高斯光束与双芯光纤(TCF)的感应双光束之间的干涉形成的。在传感光路中,非纤芯光纤(NCF)和TCF偏移拼接结构用作差分流体RI传感元件,通过计算TCF的两个纤芯之间的相位差,可以抑制背景信号。这种简单实用的相位减法可在单次测量中实现直接背景减法,并将背景信号降低到原始噪声水平的1/25。将流体连续引入到装有传感光纤的流体管中,以实现流体RI的在线测量。实验结果表明,获得了大约13 s的短响应时间和大约835 rad /折射率单位(RIU)的高灵敏度。高灵敏度得益于光路与流体之间的直接相互作用,这比通过在相位查询中启用四极杆谐振实现的折射率等离子体传感器的灵敏度高47倍(17.46 rad / RIU)。由于该方案具有灵敏度高,样品消耗少,响应速度快和固有的背景噪声抑制的优点,因此它将在许多样品消耗少且需要高灵敏度的分析测量中找到许多应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号