Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1596871 | Solid State Communications | 2006 | 5 Pages |
Abstract
An all-coupling variational calculation based on Lee-Low-Pines-Huybrechts (LLPH) theory is performed to study the ground state and the first excited state in an asymmetric polar semiconductor quantum wire that is valid for the entire range of the electron-phonon coupling constant and arbitrary confinement length. It is shown that the polaronic effects are very important and size dependent, if the effective width of the wire is reduced below a certain length scale. It is also shown that asymmetry in a quantum wire can be used as an extra parameter to increase the stability of the polaron. Finally the theory is applied to a realistic CdS quantum wire.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Phani Murali Krishna, Soma Mukhopadhyay, Ashok Chatterjee,