法布里-珀罗干涉仪
游标尺
天文干涉仪
对偶(语法数字)
材料科学
谐波
光学
干涉测量
声学
物理
激光器
文学类
艺术
作者
Ying Gao,Haiming Qiu,Shushan Mo,Yong Yao,Jiajun Tian
出处
期刊:Measurement
[Elsevier BV]
日期:2025-04-23
卷期号:253: 117672-117672
被引量:3
标识
DOI:10.1016/j.measurement.2025.117672
摘要
• This study introduces a novel sensitivity amplification mechanism, the dual harmonic Vernier effect (DHVE), for gas pressure measurements. • Unlike previous implementations of the Vernier effects, the DHVE combines the sensitivity enhancements of the dual Vernier effect (DVE) and the Harmonic Vernier Effect (HVE). • We demonstrate ultrahigh gas-pressure sensitivity (−2035.3 nm/MPa) in a fiber-optic sensor with a DHVE-based parallel Fabry–Perot interferometer (FPI) structure comprising two FPIs: one with a closed cavity using a SiO 2 film and another with an open cavity using a hollow-core fiber. • Our simulations and experiments reveal the wavelength drift behavior of the DHVE sensor and identify the two key factors influencing its sensitivity: harmonic order and detuning ratio. • The DHVE sensor exhibits considerable potential for enhanced sensitivity through further increments in the harmonic order and decrements in the detuning ratio. This paper proposes and demonstrates an ultrasensitive parallel all-fiber sensor based on the dual harmonic Vernier effect (DHVE) for gas-pressure measurements. The sensor comprises two Fabry–Perot interferometers (FPIs) arranged in parallel: one with a closed cavity formed by a SiO 2 film and the other with an open cavity utilizing a hollow-core fiber. Unlike previous implementations of the Vernier effect, the DHVE combines the dual and harmonic Vernier effects. For this theory, detailed theoretical derivations are conducted, followed by comprehensive simulations and experimental validations. The two interferometers exhibit opposite wavelength drifts in response to the same gas pressure change, creating a specific optical path difference that generates a high-order Vernier effect. The fabricated sensor based on the DHVE achieves a sensitivity of −2035.3 nm/MPa. Furthermore, we experimentally investigate the influence of harmonic order and detuning ratio on the sensitivity of the DHVE and the relation of the output behavior of the DHVE with the wavelength direction. Notably, the DHVE-based sensor enhances fabrication tolerance and, owing to its all-fiber design, exhibits excellent stability and low temperature sensitivity, with a measured sensitivity of 127.6 pm/°C.
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