Fabrication and characterization of bandpass filters based on concatenated chirped fiber gratings

被引:24
作者
Sugden, K
Zhang, L
Williams, JAR
Fallon, RW
Everall, LA
Chisholm, KE
Bennion, I
机构
[1] Dept. Electron. Eng. and Appl. Phys., Aston University, Birmingham, B4 7ET, Aston Triangle
[2] Aston University, Birmingham
[3] Sussex University, Sussex
[4] Sch. of Math. and Physical Sciences, University of Sussex
[5] Photonics Research Group, Aston University
[6] Imp. Coll. of Science and Technology, London
[7] Photonics Research Group, Aston University, Birmingham
[8] Institute of Physics, Institute of Optics, Inst. Elec. and Electron. Engineers
[9] Electron. Eng. and Appl. Phys. Dept., Aston University, Birmingham
[10] IEE, Institute of Physics (UK), Optical Society of America
基金
英国工程与自然科学研究理事会;
关键词
bandpass filters; broadband; chirped gratings; fiber Bragg gratings; thermal stability;
D O I
10.1109/50.618374
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Practical, low-loss (<2 dB), fiber Bragg grating single-passband transmission filters have been realized with >30 dB out of-band rejection over similar to 25 nm spectral widths. The approach adopted is based on the concatenation of two or more tailored broadband chirped gratings fabricated with low short-wavelength loss to maximize the rejection and stopband width in a filter with similar to 1 nm passband. The effect of thermal aging for similar complex structures is considered in the context of three different fiber types: standard telecommunication, high germania(Ge)-doped and boron/germania(B/Ge)-codoped. It is shown that while hydrogenated B/Ge-codoped fiber exhibits excellent photosensitivity, the resulting decrease in guiding strength and thermal stability may make germania-doped fiber the more attractive choice.
引用
收藏
页码:1424 / 1432
页数:9
相关论文
共 29 条
[1]   GRATING-FRUSTRATED COUPLER - A NOVEL CHANNEL-DROPPING FILTER IN SINGLE-MODE OPTICAL-FIBER [J].
ARCHAMBAULT, JI ;
RUSSELL, PSJ ;
BARCELOS, S ;
HUA, P ;
REEKIE, L .
OPTICS LETTERS, 1994, 19 (03) :180-182
[2]   MECHANISMS OF ENHANCED UV PHOTOSENSITIVITY VIA HYDROGEN LOADING IN GERMANOSILICATE GLASSES [J].
ATKINS, RM ;
LEMAIRE, PJ ;
ERDOGAN, T ;
MIZRAHI, V .
ELECTRONICS LETTERS, 1993, 29 (14) :1234-1235
[3]   HIGH-RETURN-LOSS NARROW-BAND ALL-FIBER BANDPASS BRAGG TRANSMISSION FILTER [J].
BILODEAU, F ;
HILL, KO ;
MALO, B ;
JOHNSON, DC ;
ALBERT, J .
IEEE PHOTONICS TECHNOLOGY LETTERS, 1994, 6 (01) :80-82
[4]   FABRICATION OF CHIRPED BRAGG GRATINGS IN PHOTOSENSITIVE FIBER [J].
BYRON, KC ;
SUGDEN, K ;
BRICHENO, T ;
BENNION, I .
ELECTRONICS LETTERS, 1993, 29 (18) :1659-1660
[5]   OPTICAL AGING CHARACTERISTICS OF BOROSILICATE CLAD FUSED SILICA CORE FIBER OPTICAL-WAVEGUIDES [J].
CAMLIBEL, I ;
PINNOW, DA ;
DABBY, FW .
APPLIED PHYSICS LETTERS, 1975, 26 (04) :185-187
[6]   PI-PHASE-SHIFTED PERIODIC DISTRIBUTED STRUCTURES IN OPTICAL FIBERS BY UV POST-PROCESSING [J].
CANNING, J ;
SCEATS, MG .
ELECTRONICS LETTERS, 1994, 30 (16) :1344-1345
[7]   THERMAL HYSTERESIS OF BRAGG WAVELENGTHS OF INTRACORE FIBER GRATINGS [J].
DOUAY, M ;
FERTEIN, E ;
XIE, WX ;
BERNAGE, P ;
NIAY, P ;
BAYON, JF ;
GEORGES, T .
IEEE PHOTONICS TECHNOLOGY LETTERS, 1993, 5 (11) :1331-1334
[8]  
Egan R. J., 1996, OFC'96. Optical Fiber Communication. Vol.2. 1996 Technical Digest Series. Conference Edition (IEEE Cat. No.96CH35901), P83, DOI 10.1109/OFC.1996.907662
[9]   DECAY OF ULTRAVIOLET-INDUCED FIBER BRAGG GRATINGS [J].
ERDOGAN, T ;
MIZRAHI, V ;
LEMAIRE, PJ ;
MONROE, D .
JOURNAL OF APPLIED PHYSICS, 1994, 76 (01) :73-80
[10]   VERY BROAD REFLECTION BANDWIDTH (44NM) CHIRPED FIBER GRATINGS AND NARROW BANDPASS-FILTERS PRODUCED BY THE USE OF AN AMPLITUDE MASK [J].
FARRIES, MC ;
SUGDEN, K ;
REID, DCJ ;
BENNION, I ;
MOLONY, A ;
GOODWIN, MJ .
ELECTRONICS LETTERS, 1994, 30 (11) :891-892