Emily C. McFarlane
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View article: Momentum-resolved fingerprint of Mottness in layer-dimerized Nb3Br8
Momentum-resolved fingerprint of Mottness in layer-dimerized Nb3Br8 Open
View article: Momentum-Resolved Fingerprint of Mottness in Layer-Dimerized Nb$_3$Br$_8$
Momentum-Resolved Fingerprint of Mottness in Layer-Dimerized Nb$_3$Br$_8$ Open
In a well-ordered crystalline solid, insulating behaviour can arise from two mechanisms: electrons can either scatter off a periodic potential, thus forming band gaps that can lead to a band insulator, or they localize due to strong intera…
View article: Controllable orbital angular momentum monopoles in chiral topological semimetals
Controllable orbital angular momentum monopoles in chiral topological semimetals Open
View article: Weyl spin-momentum locking in a chiral topological semimetal
Weyl spin-momentum locking in a chiral topological semimetal Open
Spin-orbit coupling in noncentrosymmetric crystals leads to spin-momentum locking – a directional relationship between an electron’s spin angular momentum and its linear momentum. Isotropic orthogonal Rashba spin-momentum locking has been …
View article: Controllable orbital angular momentum monopoles in chiral topological semimetals
Controllable orbital angular momentum monopoles in chiral topological semimetals Open
The emerging field of orbitronics aims at generating and controlling currents of electronic orbital angular momentum (OAM) for information processing. Structurally chiral topological crystals could be particularly suitable orbitronic mater…
View article: Parallel spin-momentum locking in a chiral topological semimetal
Parallel spin-momentum locking in a chiral topological semimetal Open
Spin-momentum locking in solids describes a directional relationship between the electron's spin angular momentum and its linear momentum over the entire Fermi surface. While orthogonal spin-momentum locking, such as Rashba spin-orbit coup…