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Parabolic polarization splitting of Tamm states in a metal-organic microcavity

Brückner, R.; Sudzius, M.; Hintschich, S.I.; Froeb, H.; Lyssenko, V.G.; Kaliteevski, M.A.; Iorsh, I.; Abram, R.A.; Kavokin, A.V.; Leo, K.

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Authors

R. Brückner

M. Sudzius

S.I. Hintschich

H. Froeb

V.G. Lyssenko

M.A. Kaliteevski

I. Iorsh

R.A. Abram

A.V. Kavokin

K. Leo



Abstract

We observe hybrid states of cavity photons and Tamm plasmons in an organic microcavity with an incorporated thin silver layer of increasing thickness up to 40 nm. Via μ-photoluminescence spectroscopy, we investigate their angular dependence. At oblique angles, we observe a TE-TM polarization splitting of more than 40 meV for each mode. An analytical model is developed to describe the coupling of Tamm plasmons and cavity photons and to account for the splitting of the orthogonally polarized resonances.

Citation

Brückner, R., Sudzius, M., Hintschich, S., Froeb, H., Lyssenko, V., Kaliteevski, M., …Leo, K. (2012). Parabolic polarization splitting of Tamm states in a metal-organic microcavity. Applied Physics Letters, 100(6), Article 062101. https://doi.org/10.1063/1.3681374

Journal Article Type Article
Publication Date Feb 6, 2012
Deposit Date Apr 17, 2012
Publicly Available Date Mar 28, 2024
Journal Applied Physics Letters
Print ISSN 0003-6951
Electronic ISSN 1077-3118
Publisher American Institute of Physics
Peer Reviewed Peer Reviewed
Volume 100
Issue 6
Article Number 062101
DOI https://doi.org/10.1063/1.3681374
Keywords Microcavities, Optical multilayers, Organic compounds, Photoluminescence, Photonic band gap, Silver, Surface plasmon resonance.

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Copyright Statement
© 2012 American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in Brueckner, R. and Sudzius, M. and Hintschich, S.I. and Froeb, H. and Lyssenko, V.G. and Kaliteevski, M.A. and Iorsh, I. and Abram, R.A. and Kavokin, A.V. and Leo, K. (2012) 'Parabolic polarization splitting of Tamm states in a metal-organic microcavity.', Applied physics letters., 100 (6). 062101, and may be found at http://dx.doi.org/10.1063/1.3681374





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