Article ID Journal Published Year Pages File Type
5400429 Journal of Luminescence 2013 8 Pages PDF
Abstract
The linear and nonlinear optical absorption as well as the linear and nonlinear corrections to the refractive index are calculated in a disc shaped quantum dot under the effect of an external magnetic field and parabolic and inverse square confining potentials. The exact solutions for the two-dimensional motion of the conduction band electrons are used as the basis for a perturbation-theory treatment of the effect of a static applied electric field. In general terms, the variation of one of the different potential energy parameters - for a fixed configuration of the remaining ones - leads to either blueshifts or redshifts of the resonant peaks as well as to distinct rates of change for their amplitudes.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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