Controlling dispersion and transmission spectra of hybrid resonant-gas-filled photonic-crystal optical components

Controlling dispersion and transmission spectra of hybrid resonant-gas-filled photonic-crystal optical components
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控制混合谐振气体填充光子晶体光学元件的色散和透射光谱

DOI:
10.1134/1.1307448
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发表时间:
2000
期刊:
影响因子:
--
通讯作者:
R. Miles
R. Miles
中科院分区:
--
文献类型:
--
作者:
A. Zheltikov;A. Naumov;P. Barker;R. Miles

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利用无限大一维周期性层状结构模型,研究了由光子带隙结构和共振气体组成的混合光学元件的色散特性和透射谱的控制问题。结果表明,共振增强的气体色散与光子带隙结构的色散相结合,可能会引起新的功能,在混合光谱元件的色散和传输。这些效应可以用来制作参数可控的窄带滤光片和超折射棱镜。
Using the model of an infinite one-dimensional periodic layered structure, we consider the possibilities of controlling dispersion properties and transmission spectra of hybrid optical components consisting of photonic band-gap structures filled with a resonant gas. It is shown that the combination of resonance-enhanced gas dispersion with the dispersion of a photonic band-gap structure may give rise to new features in the dispersion and transmission of hybrid spectral elements. These effects can be employed to create narrowband filters and ultrarefractive prisms with controllable parameters.