Photonic Crystal Fibers

Photonic Crystal Fibers
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DOI:
10.1007/978-1-4020-6326-8
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发表时间:
2007-05
期刊:
--
影响因子:
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通讯作者:
K. Kalli
K. Kalli
中科院分区:
其他
文献类型:
--
作者:
K. Kalli

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光子晶体光纤,也称为微结构或多孔光纤,最近在科学界引起了极大的兴趣,这要归功于提供了控制和引导光的新方法,而这是传统光纤所不能获得的。光子晶体光纤在90年代首次提出,在世界各地推动了令人兴奋和不可抑制的研究活动,从电信领域开始,然后触及计量学,光谱学,显微镜,天文学,微加工,生物学和传感。这本书的目的是通过光子晶体光纤的特性提供专家指导,特别侧重于电信方面。作者认为,光子晶体光纤可以彻底改变引导光学及其应用领域,特别是在考虑信号处理和特定功能时,而不是在长距离传输中的使用。他们提供了一个深入的分析,这些新的光纤的物理和几何特性如何可以定制,以实现特设性能的目标,使用有限元法的强大的数值方法,并牢记光子晶体光纤制造技术的可能性和限制。
Photonic crystal fibers, also known as microstructured or holey fibers, have recently generated great interest in the scientific community thanks to the new ways provided to control and guide light, not obtainable with conventional optical fibers. Proposed for the first time in the 90’s, photonic crystal fibers have driven an exciting and irrepressible research activity all over the World, starting in the telecommunication field and then touching metrology, spectroscopy, microscopy, astronomy, micromachining, biology and sensing. This book is intended to provide an expert guidance through the properties of photonic crystal fibers, with a specific focus on the telecommunication aspects. The authors believe that photonic crystal fibers can revolutionize the field of guided optics and its applications, especially when considering signal processing and specific functions rather than the usage in long distance transmission. They provide a deep analysis of how the physical and geometrical characteristics of these new fibers can be tailored to achieve the goal of ad hoc performances, using the powerful numerical approach of the finite element method, and keeping in mind the possibilities and limits of photonic crystal fiber fabrication technology.