Exciton–polariton behaviour in bulk and polycrystalline ZnO

We report detailed reflectance studies of the exciton–polariton structure of thin film polycrystalline ZnO and comparison with bulk crystal behaviour. Near-normal incidence reflectance spectra of these samples are fitted using a two-band dielectric response function. Our data show that the reflectan...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2003-12, Vol.340-342, p.230-234
Hauptverfasser: McGlynn, Enda, Fryar, James, Henry, Martin O., Mosnier, Jean-Paul, Lunney, James G., Mahony, Donagh O’, dePosada, Eduardo
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container_end_page 234
container_issue
container_start_page 230
container_title Physica. B, Condensed matter
container_volume 340-342
creator McGlynn, Enda
Fryar, James
Henry, Martin O.
Mosnier, Jean-Paul
Lunney, James G.
Mahony, Donagh O’
dePosada, Eduardo
description We report detailed reflectance studies of the exciton–polariton structure of thin film polycrystalline ZnO and comparison with bulk crystal behaviour. Near-normal incidence reflectance spectra of these samples are fitted using a two-band dielectric response function. Our data show that the reflectance data in polycrystalline ZnO differ substantially from the bulk material, with Fabry–Perot oscillations at energies below the transverse A exciton and above the longitudinal B exciton in the films. In the strong interaction regime between these energies no evidence is seen of the normally rapid oscillations associated with the anomalous waves. We demonstrate that the strong interaction of the damped exciton with the photon leads to polaritons in this region with substantial damping such that the Fabry–Perot modes are eliminated. Good qualitative agreement is achieved between the model and data. The importance of the polariton model in understanding the reflectance data of polycrystalline material is clearly seen.
doi_str_mv 10.1016/j.physb.2003.09.019
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subjects Excitons
Polaritons
Thin films
ZnO
title Exciton–polariton behaviour in bulk and polycrystalline ZnO
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