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Linear and nonlinear optical properties of a single dopant in GaN conical quantum dot with spherical cap

A. El Aouami, M. Bikerouin, Kawtar Feddi, N. Aghoutane, M. El-Yadri, E. Feddi, F. Dujardin, A. Radu, R.L. Restrepo, J.A. Vinasco, A. L. Morales, C.A. Duque, M.E. Mora‐Ramos

2020The Philosophical Magazine A Journal of Theoretical Experimental and Applied Physics26 citationsDOI

Abstract

The states of a single dopant centre in zinc-blende GaN-based conical quantum dots with spherical cap are theoretically investigated by analytically solving the corresponding effective mass equation taking advantage of the localisation of the ionised impurity at the cone apex. Nonlinear optical response is analysed through the calculation of the coefficients of optical absorption, relative refractive index change, and second and third harmonic generation, for the chosen set of allowed electron-donor states. The behaviour of the calculated optical quantities under changes in the geometry of the system due to variations in apical width and quantum dot radius is analysed and discussed.

Topics & Concepts

Quantum dotDopantConical surfaceRefractive indexRADIUSSecond-harmonic generationMaterials scienceAbsorption (acoustics)Condensed matter physicsMolecular physicsPhysicsOpticsOptoelectronicsDopingComposite materialLaserComputer securityComputer scienceGaN-based semiconductor devices and materialsSemiconductor Quantum Structures and DevicesQuantum and electron transport phenomena
Linear and nonlinear optical properties of a single dopant in GaN conical quantum dot with spherical cap | Litcius