Both spin and orbital degrees of freedom contribute to the magnetic moment of isolated atoms. However, when inserted in crystals, atomic orbital moments are quenched because of the lack of rotational symmetry that protects them when isolated. Thus, the dominant contribution to the magnetization of magnetic materials comes from electronic spin. Here we show that nanoislands of quantum spin Hall insulators can host robust orbital edge magnetism whenever their highest occupied Kramers doublet is singly occupied, upgrading the spin edge current into a charge current. The resulting orbital magnetization scales linearly with size, outweighing the spin contribution for islands of a few nm in size. This linear scaling is specific of the Dirac edge ...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
When electrons are subject to a large external magnetic field, the conventional charge quantum Hall ...
Both spin and orbital degrees of freedom contribute to the magnetic moment of isolated atoms. Howeve...
The quantum anomalous Hall (QAH) effect has been recently discovered in an experiment using a thin-f...
We present a mechanism for persistent charge current. Quantum spin Hall insulators hold dissipationl...
17 pages, 19 figuresThe orbital magnetoelectric effect (OME) generically refers to the appearance of...
Room-temperature realization of macroscopic quantum phases is one of the major pursuits in fundament...
We investigate the induced orbital magnetization density in a Rashba electron gas with magnetic impu...
This thesis provides a theoretical description of magnetic nanostructures in inversion asymmetric en...
We predict the occurrence of a novel type of atomic-scale spin lattice in an Fe monolayer on the Ir(...
The orbital magnetoelectric effect (OME) generically refers to the appearance of an orbital magnetiz...
Spin-orbit torques (SOTs) have emerged recently as practical tools to control the magnetization in s...
Topological insulators have exotic surface states that are massless Dirac fermions, manifesting spec...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
When electrons are subject to a large external magnetic field, the conventional charge quantum Hall ...
Both spin and orbital degrees of freedom contribute to the magnetic moment of isolated atoms. Howeve...
The quantum anomalous Hall (QAH) effect has been recently discovered in an experiment using a thin-f...
We present a mechanism for persistent charge current. Quantum spin Hall insulators hold dissipationl...
17 pages, 19 figuresThe orbital magnetoelectric effect (OME) generically refers to the appearance of...
Room-temperature realization of macroscopic quantum phases is one of the major pursuits in fundament...
We investigate the induced orbital magnetization density in a Rashba electron gas with magnetic impu...
This thesis provides a theoretical description of magnetic nanostructures in inversion asymmetric en...
We predict the occurrence of a novel type of atomic-scale spin lattice in an Fe monolayer on the Ir(...
The orbital magnetoelectric effect (OME) generically refers to the appearance of an orbital magnetiz...
Spin-orbit torques (SOTs) have emerged recently as practical tools to control the magnetization in s...
Topological insulators have exotic surface states that are massless Dirac fermions, manifesting spec...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
When electrons are subject to a large external magnetic field, the conventional charge quantum Hall ...