[1] HOFFMANN M, DICKHUT S, VOGES E. Fiber ribbon alignment structures based on rhombus-shaped channels in silicon[J]. IEEE Xplore, 2000, 12(7):828-830.
[2] DRACHENBERG D, MESSERLY M, PAX P, et al. First multi-watt ribbon fiber oscillator in a high order mode[J]. Optics Express, 2013, 21(15):18089-18096.
[3] CHOU H H, ZHANG F, WILKINSON T D, et al. Implementation of a 66 free-space optical fiber ribbon switch for storage area networks[J]. Journal of Lightwave Technology, 2012, 30(11):1719-1725.
[4] LUO J, JIANG S, XIONG Y. Demodulation technique of fiber grating vibration sensor based on the edge filter method[J].Laser Technology, 2013, 37(4):469-472(in Chinese).
[5] BECKER M, FERNANDES L, ROTHHARDT M, et al. Inscription of fiber bragg grating arrays in pure silica suspended core fibers[J]. IEEE Xplore, 2009, 21(19):1453-1455.
[6] QI Y F, QIAO H P, BI W H, et al. Heat transfer characteristics in fabrication of heat method in photonic crystal fiber grating[J]. Acta Physica Sinica, 2011, 60(3): 034214(in Chinese).
[7] ZHOU Y J, LIU G, LI X Q, et al. Effect of thermal residual stress on fiber Bragg grating sensors embedded in T-stiffened panels[J]. Acta Materiae Compositae Sinica, 2013, 30(1):54-61(in Chinese).
[8] WANG X, BIGOURD D, KUDLINSKI A, et al. Correlation between multiple modulation instability side lobes in dispersion oscillating fiber[J]. Optics Letters, 2014, 39(7): 1881-1884.
[9] WILLIAMS R J, VOIGTLNDER C, MARSHALL G D, et al. Point-by-point inscription of apodized fiber Bragg gratings[J]. Optics Letters, 2011, 36(15): 2988-2990.
[10] BAI H J, WANG Y F, WANG J Z, et al. Using Hamming apodization technique to improve spectral beam combining efficiency of volume Bragg grating[J]. Journal of Applied Optics, 2013, 34(2): 279-283(in Chinese).