Research Article

The Nonlinear Optical Properties of Self-Assembled InAs/GaAs Quantum Dot: Effect of Hydrostatic Pressure and Temperature

Volume: 45 Number: 2 June 30, 2024
EN

The Nonlinear Optical Properties of Self-Assembled InAs/GaAs Quantum Dot: Effect of Hydrostatic Pressure and Temperature

Abstract

In this study, we have investigated the effects of temperature (T) and hydrostatic pressure (P) on both the nonlinear and linear optical properties of an InAs/GaAs core/shell quantum dot (QD) system with a Screened-Modified Kratzer potential (SMKP). To achieve this objective, we calculated the energy levels and their corresponding wave functions of the structure using the diagonalization method within the framework of the effective mass approximation. Analytical expressions for the absorption coefficients (ACs) and relative refractive index changes (RRICs) were derived using the compact-density-matrix approach. In our numerical calculations, we first determined the variation of the SMKP dependence, the dipole transition matrix element, and the electron energies of the ground (1s) and first excited state (1p) over a range of hydrostatic pressure (P) and temperature (T). As a result, the obtained numerical calculations revealed that changes in P and T influence both the magnitude and position of the resonant peaks that define the ACs and RRICs

Keywords

References

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Details

Primary Language

English

Subjects

Nonlinear Optics and Spectroscopy

Journal Section

Research Article

Publication Date

June 30, 2024

Submission Date

February 21, 2024

Acceptance Date

May 2, 2024

Published in Issue

Year 2024 Volume: 45 Number: 2

APA
Jaouane, M., El-bakkari, K., Al, E. B., Sali, A., & Ungan, F. (2024). The Nonlinear Optical Properties of Self-Assembled InAs/GaAs Quantum Dot: Effect of Hydrostatic Pressure and Temperature. Cumhuriyet Science Journal, 45(2), 386-393. https://doi.org/10.17776/csj.1420790

Cited By

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