Spectral response of apodized fiber Bragg gratings as strain and temperature sensor

Author:

Raja Shekar P. V.1,Latha D. Madhavi23,Kumari Kusum4,Raju G.4

Affiliation:

1. Department of Physics, School of Sciences, SR University, Warangal 506 371, Telangana, India

2. Department of Physical Sciences, Kakatiya Institute of Technology and Science, Warangal 506 015, Telangana, India

3. SSD Polymers, Machilipatnam 521 002, Andhra Pradesh, India

4. Department of Physics, National Institute of Technology, Warangal 506 004, Telangana, India

Abstract

In this paper, the spectral response of uniform and apodized (Gaussian, hyperbolic tangent, apod1, sine, and raised sine) FBGs is analyzed for sensing applications. The reflectivity at Bragg wavelength as well as for sidelobes was assessed as a function of grating length and apodization profiles. The FBG strain and temperature sensors were simulated and a linear response between applied strain or temperature and the wavelength shift is observed. The results indicate that the sensitivity of the sensor is found to be affected both by the grating length and apodization type. The typical strain and thermal sensitivity values are 1.223 pm/[Formula: see text] and 13.60 pm/[Formula: see text]C, respectively. The results suggest that Gaussian, sine, and raised sine profiles have lower sidelobe strength and reliable sensitivities. The key finding from this study specifies that the ideal grating length must be preferably between 5 and 10 mm for a good sensing behavior.

Funder

Department of Science and Technology

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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