Paper
3 September 1992 Effect of Coulomb potential well on exchange-induced properties of CdTe/(Cd,Mn)Te quantum wells
Alexey V. Kavokin, Vladimir P. Kochereshko, Galina R. Pozina, Igor N. Uraltsev, Dmitrii R. Yakovlev, Gottfried Landwehr, Robert N. Bicknell-Tassius, Andreas Waag
Author Affiliations +
Proceedings Volume 1675, Quantum Well and Superlattice Physics IV; (1992) https://doi.org/10.1117/12.137630
Event: Semiconductors '92, 1992, Somerset, NJ, United States
Abstract
We report a pronounced effect on an additional hole confinement in the electron Coulomb potential on giant splitting and oscillator strengths of the exciton Zeeman patterns in CdTe/(Cd,Mn)Te quantum well structures. Measuring oscillator strength and Zeeman splitting as a function of the quantum well width and/or an external magnetic field by resonance reflection spectroscopy we demonstrate the transition from a hole subjected to a net potential well to that confined to the electron Coulomb potential occurring in quantum wells thicker than 30 angstroms. This transition is also found in superlattices where the electron wave function changes its character from three- to two-dimensional with an increase of the superlattices period. Analyzing the magnetooptical data taken above and below the transition we find the hole confinement in the electron Coulomb potential to decrease a hole wave function penetration into semimagnetic barriers to decrease the strength of the exchange interaction of holes with magnetic ions.
© (1992) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Alexey V. Kavokin, Vladimir P. Kochereshko, Galina R. Pozina, Igor N. Uraltsev, Dmitrii R. Yakovlev, Gottfried Landwehr, Robert N. Bicknell-Tassius, and Andreas Waag "Effect of Coulomb potential well on exchange-induced properties of CdTe/(Cd,Mn)Te quantum wells", Proc. SPIE 1675, Quantum Well and Superlattice Physics IV, (3 September 1992); https://doi.org/10.1117/12.137630
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KEYWORDS
Quantum wells

Oscillators

Excitons

Magnetism

Stereolithography

Superlattices

Ions

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