Identical-dual-bandpass sampled fiber Bragg grating and its application to ultranarrow filters

We have theoretically proposed and experimentally demonstrated a new kind of ultranarrow identical-dual-bandpass sampled fiber Bragg gratings (SFBGs) with a pi phase shift technique. The spacing of two bandpasses of the proposed grating can be flexibly adjusted by changing the sampled period, and an...

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Veröffentlicht in:Applied Optics 2008-10, Vol.47 (30), p.5637-5643
Hauptverfasser: Liu, Xueming, Lin, Aoxiang, Sun, Guoyong, Moon, Dae Seung, Hwang, Dusun, Chung, Youngjoo
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container_end_page 5643
container_issue 30
container_start_page 5637
container_title Applied Optics
container_volume 47
creator Liu, Xueming
Lin, Aoxiang
Sun, Guoyong
Moon, Dae Seung
Hwang, Dusun
Chung, Youngjoo
description We have theoretically proposed and experimentally demonstrated a new kind of ultranarrow identical-dual-bandpass sampled fiber Bragg gratings (SFBGs) with a pi phase shift technique. The spacing of two bandpasses of the proposed grating can be flexibly adjusted by changing the sampled period, and any desired spacing can be achieved in principle. An experimental example shows that the transmission peaks of two narrow transmission-band are near 1549.1 and 1550.1 nm. Based on the proposed SFBG, an ultranarrow identical-dual-channel filter is designed. Two channels of the proposed filter have an equal bandwidth, an even strength, and the same group delay. The bandwidth of each channel of our filter is as small as 1 pm and up to 10(-3) pm (corresponding to approximately 0.1 MHz), which is less than the bandwidth of the conventional SFBG filters by a factor of 10(2)-10(4). The proposed grating and filter can find potential applications with slow light and dual-wavelength single-longitudinal-mode fiber lasers.
doi_str_mv 10.1364/AO.47.005637
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title Identical-dual-bandpass sampled fiber Bragg grating and its application to ultranarrow filters
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