Asymmetric transmission of linearly polarized light at optical metamaterials

We experimentally demonstrate a three-dimensional chiral optical metamaterial that exhibits an asymmetric transmission for forwardly and backwardly propagating linearly polarized light. The observation of this novel effect requires a metamaterial composed of three-dimensional chiral meta-atoms witho...

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Veröffentlicht in:Physical review letters 2010-06, Vol.104 (25), p.253902-253902, Article 253902
Hauptverfasser: Menzel, C, Helgert, C, Rockstuhl, C, Kley, E-B, Tünnermann, A, Pertsch, T, Lederer, F
Format: Artikel
Sprache:eng
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Zusammenfassung:We experimentally demonstrate a three-dimensional chiral optical metamaterial that exhibits an asymmetric transmission for forwardly and backwardly propagating linearly polarized light. The observation of this novel effect requires a metamaterial composed of three-dimensional chiral meta-atoms without any rotational symmetry. Our analysis is supported by a systematic investigation of the transmission matrices for arbitrarily complex, generally lossy media that allows deriving a simple criterion for asymmetric transmission in an arbitrary polarization base. Contrary to physical intuition, in general the polarization eigenstates in such three-dimensional and low-symmetry metamaterials do not obey fixed relations and the associated transmission matrices cannot be symmetrized.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.104.253902