TY - JOUR
T1 - High Sensitivity Curvature Sensor with Intensity Demodulation Based on Single-Mode-Tapered Multimode-Single-Mode Fiber
AU - Yang, Biyao
AU - Niu, Yanxiong
AU - Yang, Bowen
AU - Hu, Yanhui
AU - Dai, Lingling
AU - Yin, Yiheng
AU - Ding, Ming
N1 - Publisher Copyright:
© 2001-2012 IEEE.
PY - 2018/2/1
Y1 - 2018/2/1
N2 - A high sensitivity curvature sensor based on single-mode-tapered multimode-single-mode (STMS) fiber structure has been proposed and demonstrated theoretically and experimentally. Due to elastic-optical effect, light field distribution of the STMS structure would be asymmetric when bending is applied, resulting in a profound effect on the transmission characteristics of the STMS structure. The experimental results show a good agreement with the trend of the theoretical predictions. Adopting the intensity demodulation in experiments, an average sensitivity of -21.734 dB/m-1 over the range of 0.7064 to 1.9129 m-1 and the maximum sensitivity of -144.876 dB/m-1 at the curvature of 1.9129 m-1 have been achieved. Besides, the dependence of temperature on the transmission spectrum of this curvature sensor has been investigated, showing a low temperature cross-sensitivity. Because of these superior properties, this curvature sensor could find useful applications in architecture, mechanical engineering, and medical science.
AB - A high sensitivity curvature sensor based on single-mode-tapered multimode-single-mode (STMS) fiber structure has been proposed and demonstrated theoretically and experimentally. Due to elastic-optical effect, light field distribution of the STMS structure would be asymmetric when bending is applied, resulting in a profound effect on the transmission characteristics of the STMS structure. The experimental results show a good agreement with the trend of the theoretical predictions. Adopting the intensity demodulation in experiments, an average sensitivity of -21.734 dB/m-1 over the range of 0.7064 to 1.9129 m-1 and the maximum sensitivity of -144.876 dB/m-1 at the curvature of 1.9129 m-1 have been achieved. Besides, the dependence of temperature on the transmission spectrum of this curvature sensor has been investigated, showing a low temperature cross-sensitivity. Because of these superior properties, this curvature sensor could find useful applications in architecture, mechanical engineering, and medical science.
KW - Curvature sensor
KW - multimode interference
KW - taper
KW - temperature independence
UR - https://www.scopus.com/pages/publications/85038368872
U2 - 10.1109/JSEN.2017.2782241
DO - 10.1109/JSEN.2017.2782241
M3 - 文章
AN - SCOPUS:85038368872
SN - 1530-437X
VL - 18
SP - 1094
EP - 1099
JO - IEEE Sensors Journal
JF - IEEE Sensors Journal
IS - 3
M1 - 8186146
ER -