Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice

In this work, we investigate the interacting electrons on a square lattice in the presence of Rashba spin-orbit coupling. We first obtain the effective spin model from the Rashba-Hubbard model in the strongly correlated limit using the second perturbation theory. The effective spin model includes is...

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Main Authors: Z Mortazavizade, H Mosadeq, M-H Zare
Format: Article
Language:English
Published: Isfahan University of Technology 2020-05-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/article_1600_9fb46397daa76be484db8aae924be524.pdf
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spelling doaj-fec7984c6bfd489e8a770eed5a15aa192020-11-28T12:49:40ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642020-05-0120111712410.47176/ijpr.20.1.252231600Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square latticeZ Mortazavizade0H Mosadeq1M-H Zare2Department of Physics, Faculty of Science, Shahrekord University, Shahrekord, IranDepartment of Physics, Faculty of Science, Shahrekord University, Shahrekord, IranDepartment of Physics, Faculty of Science, Qom University of Technology, Qom, IranIn this work, we investigate the interacting electrons on a square lattice in the presence of Rashba spin-orbit coupling. We first obtain the effective spin model from the Rashba-Hubbard model in the strongly correlated limit using the second perturbation theory. The effective spin model includes isotropic Heisenberg terms, nearest- and next-nearest-neighbor interactions, as well as the anisotropic ones as Kane-Mele and Dzyaloshinski-Moriya interactions. We proceed to study the influence of Rashba spin-orbit coupling on the stability of the magnetic phases of isotropic Heisenberg using Luttinger-Tisza and variational minimization classical methods. Our classical calculations show that the anisotropic terms leads to the instability of the Neel, classical degenerate and collinear phases of the isotropic Heisenberg model on the square lattice into an incommensurate planar phase. The spiral magnetic order in the two-dimensional frustrated magnets can be disordered by considering the quantum fluctuations. In a heterostructure including a noncollinear magnet and a singlet superconductor, singlet Cooper pairs can be converted to triplet pairings due to the broken spin rotational symmetry. Therefore, we can engineer a topological superconductor using noncollinear magnet in a heterostructure system.http://ijpr.iut.ac.ir/article_1600_9fb46397daa76be484db8aae924be524.pdfspin-orbit couplingin-plane spiral orderluttinger-tisza and variational methods
collection DOAJ
language English
format Article
sources DOAJ
author Z Mortazavizade
H Mosadeq
M-H Zare
spellingShingle Z Mortazavizade
H Mosadeq
M-H Zare
Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
Iranian Journal of Physics Research
spin-orbit coupling
in-plane spiral order
luttinger-tisza and variational methods
author_facet Z Mortazavizade
H Mosadeq
M-H Zare
author_sort Z Mortazavizade
title Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
title_short Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
title_full Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
title_fullStr Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
title_full_unstemmed Classical phase diagram of the Rashba-Hubbard model in the strongly correlated limit on square lattice
title_sort classical phase diagram of the rashba-hubbard model in the strongly correlated limit on square lattice
publisher Isfahan University of Technology
series Iranian Journal of Physics Research
issn 1682-6957
2345-3664
publishDate 2020-05-01
description In this work, we investigate the interacting electrons on a square lattice in the presence of Rashba spin-orbit coupling. We first obtain the effective spin model from the Rashba-Hubbard model in the strongly correlated limit using the second perturbation theory. The effective spin model includes isotropic Heisenberg terms, nearest- and next-nearest-neighbor interactions, as well as the anisotropic ones as Kane-Mele and Dzyaloshinski-Moriya interactions. We proceed to study the influence of Rashba spin-orbit coupling on the stability of the magnetic phases of isotropic Heisenberg using Luttinger-Tisza and variational minimization classical methods. Our classical calculations show that the anisotropic terms leads to the instability of the Neel, classical degenerate and collinear phases of the isotropic Heisenberg model on the square lattice into an incommensurate planar phase. The spiral magnetic order in the two-dimensional frustrated magnets can be disordered by considering the quantum fluctuations. In a heterostructure including a noncollinear magnet and a singlet superconductor, singlet Cooper pairs can be converted to triplet pairings due to the broken spin rotational symmetry. Therefore, we can engineer a topological superconductor using noncollinear magnet in a heterostructure system.
topic spin-orbit coupling
in-plane spiral order
luttinger-tisza and variational methods
url http://ijpr.iut.ac.ir/article_1600_9fb46397daa76be484db8aae924be524.pdf
work_keys_str_mv AT zmortazavizade classicalphasediagramoftherashbahubbardmodelinthestronglycorrelatedlimitonsquarelattice
AT hmosadeq classicalphasediagramoftherashbahubbardmodelinthestronglycorrelatedlimitonsquarelattice
AT mhzare classicalphasediagramoftherashbahubbardmodelinthestronglycorrelatedlimitonsquarelattice
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