Fr. 102.00

Single & Multi-Quantum Dots Optoelectronic Properties and Applications

English · Paperback / Softback

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In this study, we explored the optical and electronic properties of cylindrical quantum dots (CQDs) and multilayer CQDs based on III-V materials, both with and without a single dopant, under the influence of hydrostatic pressure (P), electric field (EF), laser field (LF), and magnetic field (MF). We used the variational method and the finite element method (FEM) to solve the Schrödinger equation and calculate the properties of the system. Initially, we examined the absorption coefficient and refractive index of a CQD under the influence of EF and LF as a function of potential confinement parameters and QD size. Our results indicate that the application of an MF and external P increased the binding energy. Additionally, the effect of strain due to lattice mismatch on the binding energy was significant for low P at the center of the dots. In the case of multilayer CQDs, we demonstrated that the photoionization cross section red-shifts as the radius or temperature increases and blue-shifts due to the additional confinement induced by P. For InAs/GaAs pyramid QD intermediate band solar cells (IBSCs), we found that the presence of QDs significantly impacts the performance of the IBSCs.

About the author










Dr. M. Jaouane received his Ph.D. with a specialization in Materials Science for Energy and the Environment in 2023 from Sidi Mohamed Ben Abdellah University, Morocco. Currently, he;s working as a professor at the Ministry of National Education. His research interests include the optical and electronic properties and applications of nanostructures.

Product details

Authors Abdelghani Fakkahi, Mohammed Jaouane, Ahmed Sali
Publisher LAP Lambert Academic Publishing
 
Languages English
Product format Paperback / Softback
Released 19.06.2024
 
EAN 9786207805600
ISBN 9786207805600
No. of pages 172
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Theoretical physics

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