研究目的
Investigating the manufacturing and performance of in-line Fabry–Perot cavities for refractive index sensing using a novel technique combining NIR laser microdrilling and electric arc fusion.
研究成果
The study successfully demonstrated a novel method for manufacturing in-line fiber Fabry–Perot cavities using NIR laser microdrilling and electric arc fusion, achieving high sensitivities for refractive index measurement. The technique offers advantages in terms of ease of manufacture and cost-effectiveness compared to other methods.
研究不足
The study notes the complexity of analyzing interferograms with irregular fringe spacing and the need for careful selection of analysis regions. Future work is suggested to improve methodologies and understand unexpected phenomena.
1:Experimental Design and Method Selection
The study involved creating microholes on optical fiber tips using a Q-switched Nd:YAG laser, followed by fusing the microdrilled fiber with another fiber using a standard splicing machine to create Fabry–Perot cavities. The cavities were then tested for refractive index sensing.
2:Sample Selection and Data Sources
Standard single-mode telecommunication optical fibers were used. Solutions with different refractive indices were prepared by mixing ethylene glycol and distilled water.
3:List of Experimental Equipment and Materials
Q-switched Nd:YAG laser (Litron TRLI G 450-10), standard splicing machine, optical spectrum analyzer (OSA), superluminescent diode (SLD), three-port optical fiber circulator, Abbe refractometer.
4:Experimental Procedures and Operational Workflow
The process included laser microdrilling of fiber tips, fusion splicing to create cavities, cleaving the fiber tips to adjust cavity lengths, and testing the sensors in solutions with varying refractive indices. Signal analysis was performed using fringe visibility and fast Fourier transform techniques.
5:Data Analysis Methods
The reflected signals were analyzed using fringe visibility and fast Fourier transform (FFT) to determine the sensors' sensitivity to refractive index changes.
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