Interaction of two-dimensional magnetoexcitons
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DUMANOV, Evgheni, PODLESNY, Igor, MOSKALENKO, Sveatoslav, LIBERMAN, Michael. Interaction of two-dimensional magnetoexcitons. In: Physica E: Low-Dimensional Systems and Nanostructures, 2017, nr. 88, pp. 77-86. ISSN -. DOI: https://doi.org/10.1016/j.physe.2016.11.017
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Physica E: Low-Dimensional Systems and Nanostructures
Numărul 88 / 2017 / ISSN - /ISSNe 1386-9477

Interaction of two-dimensional magnetoexcitons

DOI:https://doi.org/10.1016/j.physe.2016.11.017

Pag. 77-86

Dumanov Evgheni1, Podlesny Igor1, Moskalenko Sveatoslav1, Liberman Michael23
 
1 Institute of Applied Physics, Academy of Sciences of Moldova,
2 Nordic Institute for Theoretical Physics (NORDITA) KTH,
3 Stockholms Universitet
 
 
Disponibil în IBN: 16 martie 2022


Rezumat

We study interaction of the two-dimensional magnetoexcitons with in-plane wave vector k→=0, taking into account the influence of the excited Landau levels (ELLs) and of the external electric field perpendicular to the surface of the quantum well and parallel to the external magnetic field. It is shown that the account of the ELLs gives rise to the repulsion between the spinless magnetoexcitons with k→=0 in the Fock approximation, with the interaction constant g decreasing inverse proportional to the magnetic field strength B (g(0)∼1/B). In the presence of the perpendicular electric field the Rashba spin-orbit coupling (RSOC), Zeeman splitting (ZS) and nonparabolicity of the heavy-hole dispersion law affect the Landau quantization of the electrons and holes. They move along the new cyclotron orbits, change their Coulomb interactions and cause the interaction between 2D magnetoexcitons with k→=0. The changes of the Coulomb interactions caused by the electrons and by the holes moving with new cyclotron orbits are characterized by some coefficients, which in the absence of the electric field turn to be unity. The differences between these coefficients of the electron-hole pairs forming the magnetoexcitons determine their affinities to the interactions. The interactions between the homogeneous, semihomogeneous and heterogeneous magnetoexcitons forming the symmetric states with the same signs of their affinities are attractive whereas in the case of different sign affinities are repulsive. In the heterogeneous asymmetric states the interactions have opposite signs in comparison with the symmetric states. In all these cases the interaction constant g have the dependence g(0)~1/B.

Cuvinte-cheie
A. Exciton, D. Landau quantization, Rashba spin-orbit coupling, Zeeman splitting