Xiao, X.; He, J.; Xu, X.; Chen, R.; Du, B.; Chen, Y.; Liu, S.; Fu, C.; Wang, Y.
High-Temperature-Resistant Fiber Laser Vector Accelerometer Based on a Self-Compensated Multicore Fiber Bragg Grating. Sensors 2022, 22, 6459.
https://doi.org/10.3390/s22176459
AMA Style
Xiao X, He J, Xu X, Chen R, Du B, Chen Y, Liu S, Fu C, Wang Y.
High-Temperature-Resistant Fiber Laser Vector Accelerometer Based on a Self-Compensated Multicore Fiber Bragg Grating. Sensors. 2022; 22(17):6459.
https://doi.org/10.3390/s22176459
Chicago/Turabian Style
Xiao, Xunzhou, Jun He, Xizhen Xu, Runxiao Chen, Bin Du, Yanping Chen, Shen Liu, Cailing Fu, and Yiping Wang.
2022. "High-Temperature-Resistant Fiber Laser Vector Accelerometer Based on a Self-Compensated Multicore Fiber Bragg Grating" Sensors 22, no. 17: 6459.
https://doi.org/10.3390/s22176459
APA Style
Xiao, X., He, J., Xu, X., Chen, R., Du, B., Chen, Y., Liu, S., Fu, C., & Wang, Y.
(2022). High-Temperature-Resistant Fiber Laser Vector Accelerometer Based on a Self-Compensated Multicore Fiber Bragg Grating. Sensors, 22(17), 6459.
https://doi.org/10.3390/s22176459