Frustrated quantum magnets can harbor unconventional spin-liquid ground states in which the elementary magnetic moments fractionalize into new emergent degrees of freedom. While the fractionalization of quantum numbers is one of the recurring themes in modern condensed matter physics, it often remains a challenge to devise a controlled analytical framework tracking this phenomenon. A notable exception is the exactly solvable Kitaev model, in which spin degrees of freedom fractionalize into Majorana fermions and a Z(2) gauge field. Here, we discuss the physics of fractionalization in three-dimensional Kitaev models and demonstrate that the itinerant Majorana fermions generically form a (semi) metal which, depending on the underlying lattice ...
International audienceSpin-orbital liquids are quantum disordered states in systems with entangled s...
We investigate the generic features of the low energy dynamical spin structure factor of the Kitaev ...
Mechanical strain can generate a pseudomagnetic field, and hence Landau levels (LL), for low-energy ...
In the field of frustrated magnetism, Kitaev models provide a unique framework to study the phenomen...
Spin-orbit coupled Mott insulators on trivalent lattices open up a new arena of exotic correlated qu...
The formation of quantum spin liquids in frustrated magnets represents an exciting possibility due t...
Geometrical constraints to the electronic degrees of freedom within condensed-matter systems often g...
In this thesis, we study the topological phases of quantum spin systems. One project is to investiga...
We analyze the dynamical response of a range of three-dimensional Kitaev quantum spin liquids, using...
We study the effect of adding disorder to the Kitaev model on the hyperhoneycomb lattice, which host...
We analyse the dynamical response of a range of 3D Kitaev quantum spin-liquids, using lattice models...
The S=3/2 Kitaev honeycomb model (KHM) has defied an analytical as well as numerical understanding b...
Quantum spin liquids are highly fascinating quantum liquids in which the spin degrees of freedom fra...
Majorana fermions were originally proposed as elementary particles acting as their own antiparticles...
We present the theory of dynamical spin response for the Kitaev honeycomb model, obtaining exact res...
International audienceSpin-orbital liquids are quantum disordered states in systems with entangled s...
We investigate the generic features of the low energy dynamical spin structure factor of the Kitaev ...
Mechanical strain can generate a pseudomagnetic field, and hence Landau levels (LL), for low-energy ...
In the field of frustrated magnetism, Kitaev models provide a unique framework to study the phenomen...
Spin-orbit coupled Mott insulators on trivalent lattices open up a new arena of exotic correlated qu...
The formation of quantum spin liquids in frustrated magnets represents an exciting possibility due t...
Geometrical constraints to the electronic degrees of freedom within condensed-matter systems often g...
In this thesis, we study the topological phases of quantum spin systems. One project is to investiga...
We analyze the dynamical response of a range of three-dimensional Kitaev quantum spin liquids, using...
We study the effect of adding disorder to the Kitaev model on the hyperhoneycomb lattice, which host...
We analyse the dynamical response of a range of 3D Kitaev quantum spin-liquids, using lattice models...
The S=3/2 Kitaev honeycomb model (KHM) has defied an analytical as well as numerical understanding b...
Quantum spin liquids are highly fascinating quantum liquids in which the spin degrees of freedom fra...
Majorana fermions were originally proposed as elementary particles acting as their own antiparticles...
We present the theory of dynamical spin response for the Kitaev honeycomb model, obtaining exact res...
International audienceSpin-orbital liquids are quantum disordered states in systems with entangled s...
We investigate the generic features of the low energy dynamical spin structure factor of the Kitaev ...
Mechanical strain can generate a pseudomagnetic field, and hence Landau levels (LL), for low-energy ...