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Electronic and optical properties of InGaAs quantum wells with Mn-delta-doping GaAs barriers

2015/09/23 by Udson C. Mendes, Mendes, Udson C., M. A. G. Balanta +6
Materials Science · Physics and Astronomy · #FOS: Physical sciences #Mesoscale and Nanoscale Physics (cond-mat.mes-hall) #Quantum and electron transport phenomena #Semiconductor Quantum Structures and Devices #ZnO doping and properties #cond-mat.mes-hall

paper · pdf · doi:10.48550/arxiv.1509.07136

10 pages, 5 figures

arxiv created 2015/09/23 · openalex publication_date 2015/09/23 · arxiv updated 2015/09/25 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/28

Abstract

We present here the electronic structure and optical properties of InGaAs quantum wells with barrier doped with Manganese. We calculated the electronic states and optical emission within the envelope function and effective mass approximations using the spin-density functional theory in the presence of an external magnetic field. We observe magneto-oscillations of the Landau levels at low-magnetic fields (B < 5 T) that are dominated by the magnetic interaction between holes spin and Mn spin, while at high magnetic fields the spin-polarization of the hole gas is the dominant effect. Our results also show that a gate voltage alter significantly the magneto-oscillations of the emission energy and may be an external control parameter for the magnetic properties of the system. Finally, we discuss the influence of the Landau Levels oscillations in the emission spectra and compare with available experimental.

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