[1] S DVINSKIKH, I FURO. Anisotropic self-diffusion in the nematic phase of a thermotropic liquid crystal by 1H-spin-echo nuclear magnetic resonance. Journal of Chemical Physics, 115, 1946-1950(2001).
[2] Jun WANG, Rong YANG, Jiao ZHENG et al. Visualized measurement of the liquid phase diffusion by using digital holographic interferometry. Acta Photonica Sinica, 45, 0412001(2016).
[3] B CAIN, C CLUNIE, K BAIRD. Diaphragm cell determination of the interdiffusion coefficient for succinonitrile plus water. International Journal of Thermophysics, 16, 1225-1234(1995).
[4] Hangzhou YANG, Xin LIU, NAN Pengyu et al. Progress in research of optical fiber high temperature and strain sensor. Acta Optica Sinica, 51, 1006002(2022).
[5] T ERDOGAN. Fiber grating spectra. Journal of Lightwave Technology, 15, 1277-1294(1997).
[6] Hongye LI, Xiaofan ZHAO, Binyu RAO et al. Building-up and suppression of cladding mode coupling in fiber Bragg gratings. Journal of Optics, 22, 075704(2020).
[7] Tuan GUO, Fu LIU, Baiou GUAN et al. Tilted fiber grating mechanical and biochemical sensors. Optics & Laser Technology, 78, 19-33(2016).
[8] Zhihong LI, Zhuying YU, Yubin SHEN et al. Graphene enhanced leaky mode resonance in tilted fiber Bragg grating: a new opportunity for highly sensitive fiber optic sensor. IEEE Access, 7, 26641-26651(2019).
[9] Biqiang JIANG, Jianlin ZHAO, Chuan QIN et al. Method for measuring liquid phase diffusion based on tilted fiber Bragg grating. Optics Letters, 36, 4308-4310(2011).
[10] Biqiang JIANG, Xin LU, Dong MAO et al. In-situ monitoring method for solution volatilization using tilted fiber Bragg grating. IEEE Sensors Journal, 15, 3000-3003(2014).
[11] J ALBERT, Liyang SHAO, C CAUCHETEUR. Tilted fiber Bragg grating sensors. Laser & Photonics Reviews, 7, 83-108(2013).
[12] Xuantung PHAM, Jinhai SI, Tao CHEN et al. Wide range refractive index measurement based on off-axis tilted fiber Bragg gratings fabricated using femtosecond laser. Journal of Lightwave Technology, 37, 3027-3034(2019).
[13] Dingyi FENG, Xueguang QIAO, J ALBERT. Off-axis ultraviolet-written fiber Bragg gratings for directional bending measurements. Optics Letters, 41, 1201-1204(2016).
[14] Kaiming YANG, Bonan LIU, Changrui LIAO et al. Highly localized point-by-point fiber Bragg grating for multi-parameter measurement. Journal of Lightwave Technology, 39, 6686-6690(2021).
[15] J THOMAS, N JOVANOVIC, G KRAMER et al. Cladding mode coupling in highly localized fiber Bragg gratings II: complete vectorial analysis. Optics Express, 20, 21434-21449(2012).
[16] Chen ZHU, D ALLA, Jie HUANG. High-temperature stable FBGs fabricated by a point-by-point femtosecond laser inscription for multi-parameter sensing. OSA Continuum, 4, 355-363(2021).
[17] N ABDUKERIM, D GROBNIC, C HNATOVSKY et al. High-temperature stable fiber Bragg gratings with ultrastrong cladding modes written using the phase mask technique and an infrared femtosecond laser. Optics Letters, 45, 443-446(2020).
[18] Chi LIU, Yajun JIANG, Haili YANG et al. Highly localized fiber Bragg gratings with strong cladding mode inscribed by femtosecond laser. IEEE Photonics Technology Letters, 34, 587-590(2022).
[19] D GROBNIC, C HNATOVSKY, J MIHAILOV. Low loss Type II regenerative Bragg gratings made with ultrafast radiation. Optics Express, 24, 28704-28712(2016).
[20] W SMELSER, J MIHAILOV, D GROBNIC et al. Hydrogen loading for fiber grating writing with a femtosecond laser and a phase mask. Optics Letters, 29, 2127-2129(2004).
[21] Chengkun CHEN, Tuan GUO, A LARONCHE et al. Radiation mode resonances of tilted fiber Bragg gratings for high index media measurement, 7004, 700418(2008).