论文标题

基于空心核纤维的斑点移位传感器

Hollow-core fiber-based speckle displacement sensor

论文作者

Osório, Jonas H., Cabral, Thiago D., Fujiwara, Eric, Franco, Marcos A. R., Amrani, Foued, Delahaye, Frédéric, Gérôme, Frédéric, Benabid, Fetah, Cordeiro, Cristiano M. B.

论文摘要

实现高性能空心光子晶体纤维的研究企业在最近几年取得了令人印象深刻的进步。的确,如今,使用这种纤维家族成为一种总体策略,用于构建从光束传递设备到光源和传感器的多种光学系统。在大多数应用中,需要有效的单模操作,因此,光纤微结构或灯光启动设置通常是为实现这种行为而设计的。另外,人们可以识别使用大芯多模空心纤维作为开发新光子设备的有希望的途径。因此,在本手稿中,我们提出并证明了使用大核管状晶格纤维来完成基于斑点的位移传感器的利用,该传感器已通过插入和适当地将单模纤维置于空心纤维的空隙核心中来构建。本文报道的工作涵盖了有关设备内多模强度分布演化的模拟和实验研究,以及估计分辨率为0.7μm的位移传感器的演示。我们了解到,这项调查为在感应框架内使用大核空心纤维的新机会,从而扩大了该纤维家族的应用。

The research enterprise towards achieving high-performance hollow-core photonic crystal fibers has led to impressive advancements in the latest years. Indeed, using this family of fibers becomes nowadays an overarching strategy for building a multitude of optical systems ranging from beam delivery devices to optical sources and sensors. In most applications, an effective single-mode operation is desired and, as such, the fiber microstructure or the light launching setups are typically designed for achieving such a behavior. Alternatively, one can identify the use of large-core multimode hollow-core fibers as a promising avenue for the development of new photonic devices. Thus, in this manuscript, we propose and demonstrate the utilization of a large-core tubular-lattice fiber for accomplishing a speckle-based displacement sensor, which has been built up by inserting and suitably dislocating a single-mode fiber inside the void core of the hollow fiber. The work reported herein encompasses both simulation and experimental studies on the evolution of the multimode intensity distributions within the device as well as the demonstration of a displacement sensor with an estimated resolution of 0.7 μm. We understand that this investigation identifies a new opportunity for the employment of large-core hollow fibers within the sensing framework hence widening the gamut of applications of this family of fibers.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源