Kersey, A. D., Davis, M. A., Patrick, H. J., LeBlanc, M., Koo, K. P., Askins, C. G., … Friebele, E. J. (1997). Fiber grating sensors. Journal of Lightwave Technology, 15(8), 1442-1463. doi:10.1109/50.618377
Liu, W.-F., Liu, I.-M., Chung, L.-W., Huang, D.-W., & Yang, C. C. (2000). Acoustic-induced switching of the reflection wavelength in a fiber Bragg grating. Optics Letters, 25(18), 1319. doi:10.1364/ol.25.001319
Azaña, J. (2007). Proposal of a uniform fiber Bragg grating as an ultrafast all-optical integrator. Optics Letters, 33(1), 4. doi:10.1364/ol.33.000004
[+]
Kersey, A. D., Davis, M. A., Patrick, H. J., LeBlanc, M., Koo, K. P., Askins, C. G., … Friebele, E. J. (1997). Fiber grating sensors. Journal of Lightwave Technology, 15(8), 1442-1463. doi:10.1109/50.618377
Liu, W.-F., Liu, I.-M., Chung, L.-W., Huang, D.-W., & Yang, C. C. (2000). Acoustic-induced switching of the reflection wavelength in a fiber Bragg grating. Optics Letters, 25(18), 1319. doi:10.1364/ol.25.001319
Azaña, J. (2007). Proposal of a uniform fiber Bragg grating as an ultrafast all-optical integrator. Optics Letters, 33(1), 4. doi:10.1364/ol.33.000004
Littler, I. C. M., Rochette, M., & Eggleton, B. J. (2005). Adjustable bandwidth dispersionless bandpass FBG optical filter. Optics Express, 13(9), 3397. doi:10.1364/opex.13.003397
Volanthen, M., Geiger, H., & Dakin, J. P. (1997). Distributed grating sensors using low-coherence reflectometry. Journal of Lightwave Technology, 15(11), 2076-2082. doi:10.1109/50.641525
Hotate, K., & Kajiwara, K. (2008). Proposal and experimental verification of Bragg wavelength distribution measurement within a long-length FBG by synthesis of optical coherence function. Optics Express, 16(11), 7881. doi:10.1364/oe.16.007881
Chen, L. R., Benjamin, S. D., Smith, P. W. E., & Sipe, J. E. (1997). Ultrashort pulse reflection from fiber gratings: a numerical investigation. Journal of Lightwave Technology, 15(8), 1503-1512. doi:10.1109/50.618383
Azana, J., & Muriel, M. A. (2003). Study of optical pulses - Fiber gratings interaction by means of joint time-frequency signal representations. Journal of Lightwave Technology, 21(11), 2931-2941. doi:10.1109/jlt.2003.819864
Doran, N. J., & Wood, D. (1988). Nonlinear-optical loop mirror. Optics Letters, 13(1), 56. doi:10.1364/ol.13.000056
Sanghoon Chin, Primerov, N., & Thevenaz, L. (2012). Sub-Centimeter Spatial Resolution in Distributed Fiber Sensing Based on Dynamic Brillouin Grating in Optical Fibers. IEEE Sensors Journal, 12(1), 189-194. doi:10.1109/jsen.2011.2126568
Song, K. Y., He, Z., & Hotate, K. (2006). Distributed strain measurement with millimeter-order spatial resolution based on Brillouin optical correlation domain analysis. Optics Letters, 31(17), 2526. doi:10.1364/ol.31.002526
Lancry, M., & Poumellec, B. (2013). UV laser processing and multiphoton absorption processes in optical telecommunication fiber materials. Physics Reports, 523(4), 207-229. doi:10.1016/j.physrep.2012.09.008
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