Abstract
Intraband optical transitions in semiconductor quantum dots (QDs) in the forms of a parallelepiped, sphere, and cylinder have been considered. It is shown that the size dependence of the matrix elements of electron-photon interaction, which includes the intraband transitions, differs in the E · r and A · p representations of electron-photon coupling, which are widely used to describe various optical processes. The radiative intraband relaxation rates of QD electron excitations have been calculated, depending on the QD size and shape and the parameters of the QD material. It is shown that the radiative intraband transition rate may reach 109 s−1.
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