| Literature DB >> 27906357 |
Maoxiang Hou, Feng Zhu, Ying Wang, Yiping Wang, Changrui Liao, Shen Liu, Peixiang Lu.
Abstract
A gas pressure sensor based on an antiresonant reflecting guidance mechanism in a hollow-core fiber (HCF) with an open microchannel is experimentally demonstrated for gas pressure sensing. The microchannel was created on the ring cladding of the HCF by femtosecond laser drilling to provide an air-core pressure equivalent to the external environment. The HCF cladding functions as an antiresonant reflecting waveguide, which induces sharp periodic lossy dips in the transmission spectrum. The proposed sensor exhibits a high pressure sensitivity of 3.592 nm/MPa and a low temperature cross-sensitivity of 7.5 kPa/°C. Theoretical analysis indicates that the observed high gas pressure sensitivity originates from the pressure induced refractive index change of the air in the hollow-core. The good operation durability and fabrication simplicity make the device an attractive candidate for reliable and highly sensitive gas pressure measurement in harsh environments.Entities:
Year: 2016 PMID: 27906357 DOI: 10.1364/OE.24.027890
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894