Point imaging through one-dimensional graded metal–dielectric photonic crystals

The subwavelength imaging effects in two kinds of one-dimensional (1D) graded metal–dielectric (MD) photonic crystals (PCs) are studied theoretically. When considering the losses, the structure can still act as a superlens. Compared with the structure consists of units with equal thickness, the resu...

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Published inOptik (Stuttgart) Vol. 126; no. 4; pp. 400 - 402
Main Authors Zheng, Gaige, Xie, Aigen, Xu, Linhua, Lai, Min, Wu, Yigen, Liu, Yuzhu
Format Journal Article
LanguageEnglish
Published Elsevier GmbH 01.02.2015
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Abstract The subwavelength imaging effects in two kinds of one-dimensional (1D) graded metal–dielectric (MD) photonic crystals (PCs) are studied theoretically. When considering the losses, the structure can still act as a superlens. Compared with the structure consists of units with equal thickness, the result shows that the intensity of transmitted waves is larger. Inside the slab, the field is highly concentrated, and the structure behaves as a waveguide, in a scheme that helps the formation of a super-resolved image of an object.
AbstractList The subwavelength imaging effects in two kinds of one-dimensional (1D) graded metal–dielectric (MD) photonic crystals (PCs) are studied theoretically. When considering the losses, the structure can still act as a superlens. Compared with the structure consists of units with equal thickness, the result shows that the intensity of transmitted waves is larger. Inside the slab, the field is highly concentrated, and the structure behaves as a waveguide, in a scheme that helps the formation of a super-resolved image of an object.
Author Xu, Linhua
Wu, Yigen
Xie, Aigen
Zheng, Gaige
Lai, Min
Liu, Yuzhu
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10.1063/1.2901684
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Metal–dielectric multilayers
Photonic crystals
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Snippet The subwavelength imaging effects in two kinds of one-dimensional (1D) graded metal–dielectric (MD) photonic crystals (PCs) are studied theoretically. When...
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SubjectTerms Metal–dielectric multilayers
Photonic crystals
Point imaging
Title Point imaging through one-dimensional graded metal–dielectric photonic crystals
URI https://dx.doi.org/10.1016/j.ijleo.2014.09.013
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