We have analytically explored the nature of Stark shift and self energy correction in the presence of two discrete excitonic states i.e, the heavy-hole and light-hole valence bands, below the fundamental absorption edge of semiconductor quantum dots. The time dependent perturbation technique for a three-level system, under the near band gap resonant excitation regime, has been employed; with the incorporation of the relaxation and dephasing mechanisms phenomenologically. The detuning spectra of Stark shift and self energy correction and their dependence on a moderately strong electric field, have been analyzed. The numerical and analytical estimations in a weak noncentrosymmetric CdTe quantum dot show a decrease in Stark shift and an enhancement in self energy correction for both heavy-hole and light-hole excitons.
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Univ Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, MoroccoUniv Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, Morocco
El Harouny, El Hassan
Nakra Mohajer, Soukaina
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Univ Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, MoroccoUniv Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, Morocco
Nakra Mohajer, Soukaina
Ibral, Asmaa
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Univ Chouaib Doukkali, Fac Sci, Dept Phys, Equipe Opt & Elect Solide, BP 20 El Jadida Principale, El Jadida 24000, Morocco
Univ Chouaib Doukkali, Fac Sci, Dept Phys, Lab Instrumentat Mesure & Controle, BP 20 El Jadida Principale, El Jadida 24000, MoroccoUniv Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, Morocco
Ibral, Asmaa
El Khamkhami, Jamal
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Univ Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, MoroccoUniv Abdelmalek Essaadi, Fac Sci, Lab Phys Matiere Condensee, Dept Phys, BP 2121 MHannech II, Tetouan 93030, Morocco