Dispersion management in nonlinear photonic crystal fibres with nanostructured core

Dispersion management in nonlinear photonic crystal fibres with nanostructured core
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具有纳米结构芯的非线性光子晶体光纤的色散管理

DOI:
10.2971/jeos.2011.11038
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发表时间:
2011
期刊:
Journal of the European Optical Society: Rapid Publications
影响因子:
--
通讯作者:
M. Taghizadeh
M. Taghizadeh
中科院分区:
--
文献类型:
--
作者:
R. Buczyński;D. Pysz;R. Stępień;R. Kasztelanic;I. Kujawa;M. Franczyk;A. Filipkowski;A. Waddie;M. Taghizadeh

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光子晶体光纤纤芯的亚波长结构可以改变光纤的色散特性,使零色散波长发生明显偏移。研究了由二维亚波长空气孔和各种玻璃夹杂构成纤芯结构的光子晶体光纤的色散特性。我们表明,修改的核心结构可以得到平坦的色散超过300 nm的范围内,可以移动超过700 nm的零色散波长,而核心直径和光子包层保持不变。所开发的具有纳米棒芯的光子晶体光纤已经成功地展示了近红外超连续谱的产生。
The subwavelength structure of the core of a photonic crystal fibre can modify its dispersion characteristic and significantly shift the zero dispersion wavelength. The dispersion properties of photonic crystal fibres with core structures made of a 2D lattice of subwavelength air holes and various glass inclusions are studied. We show that a modification of the core structure can give flat dispersion over a range of over 300 nm and can shift the zero dispersion wavelength over 700 nm while the core diameter and photonic cladding remain unchanged. The developed photonic crystal fibre with nanorod core has successfully demonstrated supercontinuum generation in NIR.
DOI: 10.1038/nphoton.2006.81
发表时间: 2007-02
期刊: Nature Photonics
影响因子: 35
作者:
G. Wiederhecker;C. Cordeiro;F. Couny;F. Benabid;S. Maier;J. Knight;C. Cruz;H. Fragnito
通讯作者: G. Wiederhecker;C. Cordeiro;F. Couny;F. Benabid;S. Maier;J. Knight;C. Cruz;H. Fragnito