IR Resonant Absorption in Molecular Nanofilms
S.S. Pelemiša, B. Markoskic, N.V. Delićb, S.M. Vučenovićd and D.Lj. Mirjanićd
a Faculty of Technology in Zvornik, University of East Sarajevo, 75400 Zvornik, Republic of Srpska, BiH
b Department of Physics, Faculty of Sciences, University of Novi Sad, Trg D. Obradovića 4, 21000 Novi Sad, Vojvodina, Serbia
c Technical Faculty in Zrenjanin, University of Novi Sad, Dj. Djakovića bb, 23000 Zrenjanin, Vojvodina, Serbia
d Faculty of Medicine, University of Banja Luka, Banja Luka, Republic of Srpska, BiH
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The paper presents a theoretical research of changes of optical properties of various nanofilm molecular crystals which are caused by the presence of two parallel and close borders. We used combined analytical numerical calculation to find the allowed energy states of excitons and their spatial distribution (per layers) along the axis perpendicular to surface planes. We determined permittivity for the observed models of these ultrathin dielectric films and explored the influence of boundary parameters on the occurrence of discrete (per frequencies) and selective (per layers) absorption. The conditions for occurrence of smallest number of resonant absorption lines have been found and their localization has been defined.
DOI: 10.12693/APhysPolA.116.579
PACS numbers: 71.35.Aa, 73.61.Tm, 77.22.-d, 77.55.+f