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Dive into the research topics where S. A. Owerre is active.

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Featured researches published by S. A. Owerre.


Journal of Physics: Condensed Matter | 2016

A first theoretical realization of honeycomb topological magnon insulator

S. A. Owerre

It has been recently shown that in the Heisenberg (anti)ferromagnet on the honeycomb lattice, the magnons (spin wave quasipacticles) realize a massless two-dimensional (2D) Dirac-like Hamiltonian. It was shown that the Dirac magnon Hamiltonian preserves time-reversal symmetry defined with the sublattice pseudo spins and the Dirac points are robust against magnon-magnon interactions. The Dirac points also occur at nonzero energy. In this paper, we propose a simple realization of nontrivial topology (magnon edge states) in this system. We show that the Dirac points are gapped when the inversion symmetry of the lattice is broken by introducing a next-nearest neighbour Dzyaloshinskii-Moriya (DM) interaction. Thus, the system realizes magnon edge states similar to the Haldane model for quantum anomalous Hall effect in electronic systems. However, in contrast to electronic spin current where dissipation can be very large due to Ohmic heating, noninteracting topological magnons can propagate for a long time without dissipation as magnons are uncharged particles. We observe the same magnon edge states for the XY model on the honeycomb lattice. Remarkably, in this case the model maps to interacting hardcore bosons on the honeycomb lattice. Quantum magnetic systems with nontrivial magnon edge states are called topological magnon insulators. They have been studied theoretically on the kagome lattice and recently observed experimentally on the kagome magnet Cu(1-3, bdc) with three magnon bulk bands. Our results for the honeycomb lattice suggests an experimental procedure to search for honeycomb topological magnon insulators within a class of 2D quantum magnets and ultracold atoms trapped in honeycomb optical lattices. In 3D lattices, Dirac and Weyl points were recently studied theoretically, however, the criteria that give rise to them were not well-understood. We argue that the low-energy Hamiltonian near the Weyl points should break time-reversal symmetry of the pseudo spins. Thus, recovering the same criteria in electronic systems.


Journal of Applied Physics | 2016

Topological honeycomb magnon Hall effect: A calculation of thermal Hall conductivity of magnetic spin excitations

S. A. Owerre

Quite recently, the magnon Hall effect of spin excitations has been observed experimentally on the kagome and pyrochlore lattices. The thermal Hall conductivity κxy changes sign as a function of magnetic field or temperature on the kagome lattice, and κxy changes sign upon reversing the sign of the magnetic field on the pyrochlore lattice. Motivated by these recent exciting experimental observations, we theoretically propose a simple realization of the magnon Hall effect in a two-band model on the honeycomb lattice. The magnon Hall effect of spin excitations arises in the usual way via the breaking of inversion symmetry of the lattice, however, by a next-nearest-neighbour Dzyaloshinsky-Moriya interaction. We find that κxy has a fixed sign for all parameter regimes considered. These results are in contrast to the Lieb, kagome, and pyrochlore lattices. We further show that the low-temperature dependence on the magnon Hall conductivity follows a T2 law, as opposed to the kagome and pyrochlore lattices. These...


Physical Review B | 2017

Topological thermal Hall effect in frustrated kagome antiferromagnets

S. A. Owerre

In frustrated magnets the Dzyaloshinsky-Moriya interaction arising from spin-orbit coupling can induce a magnetic long-range order. Here, we report a theoretical prediction of thermal Hall effect in frustrated kagome magnets such as KCr


EPL | 2017

Topological magnetic excitations on the distorted kagomé antiferromagnets: Applications to volborthite, vesignieite, and edwardsite

S. A. Owerre

_3


Physical Review B | 2016

Magnon Hall effect in AB-stacked bilayer honeycomb quantum magnets

S. A. Owerre

(OH)


arXiv: Strongly Correlated Electrons | 2017

Floquet topological magnons

S. A. Owerre

_6


arXiv: Strongly Correlated Electrons | 2017

Magnonic analogs of topological Dirac semimetals

S. A. Owerre

(SO4)


Physics Reports | 2015

Macroscopic quantum tunneling and quantum-classical phase transitions of the escape rate in large spin systems

S. A. Owerre; Manu B. Paranjape

_2


Physical Review B | 2013

Macroscopic quantum spin tunneling with two interacting spins

S. A. Owerre; Manu B. Paranjape

and KFe


Scientific Reports | 2017

Dirac Magnon Nodal Loops in Quasi-2D Quantum Magnets

S. A. Owerre

_3

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J. Nsofini

University of Waterloo

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