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Broadband transmission in hollow-core Bragg fibers with geometrically distributed multilayered cladding
Journal article   Peer reviewed

Broadband transmission in hollow-core Bragg fibers with geometrically distributed multilayered cladding

Dora Juan Juan Hu, Gandhi Alagappan, Yong-Kee Yeo, Perry Ping Shum and Ping Wu
Optics express, Vol.18(18), pp.18671-18684
30/08/2010
PMID: 20940759

Abstract

Optics Physical Sciences Science & Technology
For the first time, the quasiperiodic Bragg fibers with geometrically distributed multilayered cladding are proposed and analyzed. We demonstrate that hollow-core Bragg fibers with quasiperiodic dielectric multilayer cladding can achieve low loss transmission over a broadband wavelength range of more than an octave (from 0.81 mu m to 1.7 mu m). The periods of the Bragg blocks follows a geometrical progression with a common ratio r<r(c), where r(c) is defined as the critical ratio of the periods of two adjacent Bragg blocks. The arrangement of the quasiperiodic cladding can significantly modify the characteristics of the fiber, leading to a broadening of the guiding range compared to a hollow Bragg fiber with uniform periodic multilayer cladding structure. In general, a larger r value results in a broader guiding range. More Bragg blocks in the cladding and more unit cells in each Bragg block lead to a lower fiber modal loss. (C) 2010 Optical Society of America
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https://doi.org/10.1364/OE.18.018671View
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