Nonlinear optical properties of a two-dimensional elliptic quantum dot
β Scribed by G. Rezaei; Z. Mousazadeh; B. Vaseghi
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 783 KB
- Volume
- 42
- Category
- Article
- ISSN
- 1386-9477
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β¦ Synopsis
The linear and third order nonlinear optical absorption coefficient and refractive index changes of an elliptic quantum dot have been investigated, using the compact-density matrix formalism and an iterative method. In this regard, the effect of optical intensity, size and geometry of the dot on the optical absorption coefficient and refractive index changes are investigated. It is found that, not only the light intensity but also the size and the geometry of the dot have a great influence on the optical absorption coefficient and refractive index changes of the system.
π SIMILAR VOLUMES
The linear and nonlinear optical absorptions of a two-electron quantum dot are studied by using the matrix diagonalization method. The oscillator strength of the transition is calculated within the effective-mass approximation, along with the linear and the third-order nonlinear and the total optica
In this paper we review our recent study of coherent electronic properties of coupled twodimensional quantum dot arrays using numerical exact-diagonalization methods on a Mott-Hubbard type correlated tight-binding model. We predict the existence of a novel kind of persistent current in a two-dimensi