1RAO Y J, WANG Y P, RAN Z L, et al. Novel fiber-optic sensors based on long-period fiber gratings written by high-frequency CO2 laser pulses[J]. J Lightwave Tech, 2003, 21(5):1320-1327.
3TODA H, YAMASHITA T, KITAYAMA K I. Demultiplexing using an arrayed-waveguide grating for frequency-interleaved DWDM millimeter-wave radio-on-fiber systems[J].J Lightwave Tech, 2003,21(8):1735-1741.
4PENG P C, TSENG H Y, CHI S. A novel fiber-laser based sensor network with self-healing function[J]. Photon Tech Lett, 2003,15(2):275-277.
5HARUN S W, AHMAD H. L-band erbium-doped fibre amplifier with clamped and flattened-gain using FBG[J].Electron Lett, 2003, 39(17):1238-1240.
6DYNAMIC M T, GONG Y D, SHUM P. Properties of double-pass discrete Raman amplifier with FBG-based all-optical gain clamping[J]. Photon Tech Lett, 2004, 16(3):768-770.
7HARUN S W, TAMCHEK N, POOPALAN P, et al. Gain clamping in two-stage L-band EDFA using a broadband FBG[J].Photon Tech Lett, 2004, 16(2):422-424.
8CHIANG K S, LOR K P, CHOW C K,et al. Widely tunable long-period gratings fabricated in polymer-clad ion-exchanged glass waveguides[J].Photon Tech Lett, 2003,15(8):1094-1096.
9MARRA C, NIRMALATHAS A, NOVAK D, et al.Wavelength-interleaved OADMs incorporating optimized multiple phase-shifted FBGs for fiber-radio systems[J].J Lightwave Tech, 2003,21(1):32-39.