학술논문

Selective absorption in symmetric molecular nano-films
Document Type
Conference
Source
2008 26th International Conference on Microelectronics Microelectronics, 2008. MIEL 2008. 26th International Conference on. :125-128 May, 2008
Subject
Components, Circuits, Devices and Systems
Engineered Materials, Dielectrics and Plasmas
Absorption
Excitons
Green's function methods
Crystallization
Permittivity
Electronic components
Equations
Microelectronics
Microscopy
Dielectrics
Language
Abstract
A microscopic theory of dielectric properties of symmetrical ultrathin molecular films, was formulated in bosonic and nearest-neighbor approximation. The dispersion law of harmonic exciton states were calculated using the method of two-time, temperature dependent Green’s functions. It has been shown that two types of excitations can be occur: bulk and surface exciton states. Exciton spectral weights and space distribution along the direction of broken symmetry were analyzed as well. Calculating dynamical permittivity by the single-pole Green’s functions it was shown that the threshold of light absorption can be moved along frequencies, changing the film thickness and the intensity of boundary perturbations. This can give a great contribution to practical ultrathin film engineering.