We address the impact of spin-orbit coupling on the existence and properties of topological edge states of cold neutral atoms and Bose-Einstein condensates loaded in honeycomb Zeeman lattices—lattices where the spinor components are placed in potentials having opposite signs. We find that the type of spin-orbit-coupling mechanism has profound effect on the emergence of topological edge states. We also reveal that edge states persist when interatomic interactions are present and that they become metastable in Bose-Einstein condensates.Peer ReviewedPostprint (author's final draft
We address Bloch oscillations of a spin-orbit coupled atom in periodic potentials of two types: opti...
In a two-dimensional atomic Bose-Einstein condensate, we demonstrate Rashba spin-orbit coupling can ...
International audienceWe investigate realizations of topological insulators with spin-1 bosons loade...
We address the impact of spin-orbit coupling on the existence and properties of topological edge sta...
This thesis presents theoretical work devoted to the manifestation of the edge states of boson topol...
We propose to use spatial control of the Zeeman energy shifts in an ultracold atomic gas to engineer...
We investigate topological properties of models that describe graphene on realistic substrates which...
We predict that the interplay between the spin-orbit coupling, stemming from the transverse electric...
Topological matter is a popular topic in both condensed matter and cold-atom research. In the past d...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We lay out an experiment to realize time-reversal invariant topological insulators in alkali atomic ...
We investigate the formation of edge states in graphene ribbons and flakes with proximity induced va...
We theoretically explore atomic Bose-Einstein condensates (BECs) subject to position-dependent spin-...
We show that bosonic atoms loaded into orbital angular momentum l=1 states of a lattice in a diamond...
We address Bloch oscillations of a spin-orbit coupled atom in periodic potentials of two types: opti...
In a two-dimensional atomic Bose-Einstein condensate, we demonstrate Rashba spin-orbit coupling can ...
International audienceWe investigate realizations of topological insulators with spin-1 bosons loade...
We address the impact of spin-orbit coupling on the existence and properties of topological edge sta...
This thesis presents theoretical work devoted to the manifestation of the edge states of boson topol...
We propose to use spatial control of the Zeeman energy shifts in an ultracold atomic gas to engineer...
We investigate topological properties of models that describe graphene on realistic substrates which...
We predict that the interplay between the spin-orbit coupling, stemming from the transverse electric...
Topological matter is a popular topic in both condensed matter and cold-atom research. In the past d...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We lay out an experiment to realize time-reversal invariant topological insulators in alkali atomic ...
We investigate the formation of edge states in graphene ribbons and flakes with proximity induced va...
We theoretically explore atomic Bose-Einstein condensates (BECs) subject to position-dependent spin-...
We show that bosonic atoms loaded into orbital angular momentum l=1 states of a lattice in a diamond...
We address Bloch oscillations of a spin-orbit coupled atom in periodic potentials of two types: opti...
In a two-dimensional atomic Bose-Einstein condensate, we demonstrate Rashba spin-orbit coupling can ...
International audienceWe investigate realizations of topological insulators with spin-1 bosons loade...