PHENOMENOLOGICAL TREATMENT OF LONG-WAVELENGTH POLAR OPTICAL OSCILLATIONS IN SEMICONDUCTOR NANOSTRUCTURES

Citation
C. Tralleroginer et F. Comas, PHENOMENOLOGICAL TREATMENT OF LONG-WAVELENGTH POLAR OPTICAL OSCILLATIONS IN SEMICONDUCTOR NANOSTRUCTURES, Philosophical magazine. B. Physics of condensed matter. Structural, electronic, optical and magnetic properties, 70(3), 1994, pp. 583-599
Citations number
44
Categorie Soggetti
Physics, Applied
ISSN journal
09586644
Volume
70
Issue
3
Year of publication
1994
Pages
583 - 599
Database
ISI
SICI code
0958-6644(1994)70:3<583:PTOLPO>2.0.ZU;2-F
Abstract
In recent work a correct phenomenological approach to long-wavelength polar optical phonons in semiconductor nanostructures has been settled . In such treatment the vector displacement u and the electric potenti al phi are considered coupled quantities satisfying a coupled system o f differential equations. In the present work we give a brief descript ion of the theory. In a systematic way we discuss the differential equ ations of the theory, the derivation of the matching boundary conditio ns together with their physical interpretation, and the rigorous proof of the completeness and orthogonality of the oscillation modes. A gen eral method for the solution of the coupled equations is presented and applied to concrete systems: quantum wells, quantum dots and quantum wires. The dispersion relation curves are obtained, as well as the dis placement fields and potentials as a function of the coordinates. The Frohlich-like electron-phonon Hamiltonian is derived by the methods of quantum field theory and applied to the different cases.