We analyze the effect of quenched disorder on spin-1/2 quantum magnets in which magnetic frustration promotes the formation of local singlets. Our results include a theory for 2D valence-bond solids subject to weak bond randomness, as well as extensions to stronger disorder regimes where we make connections with quantum spin liquids. We find, on various lattices, that the destruction of a valence-bond solid phase by weak quenched disorder leads inevitably to the nucleation of topological defects carrying spin-1/2 moments. This renormalizes the lattice into a strongly random spin network with interesting low-energy excitations. Similarly, when short-ranged valence bonds would be pinned by stronger disorder, we find that this putative glass i...
Collective behaviour of electrons, frustration induced quantum fluctuations and entanglement in quan...
We exhibit an exactly solvable example of a SU(2) symmetric Majorana spin liquid phase, in which que...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
We analyze the effect of quenched disorder on spin-1/2 quantum magnets in which magnetic frustration...
We analyze the effect of quenched disorder on spin-1/2 quantum magnets in which magnetic frustration...
We study the effects of disorder (quenched randomness) in a two-dimensional square-lattice S=1/2 qua...
We investigate the properties of the Kitaev honeycomb model with both site dilution and exchange ran...
We study effects of disorder (randomness) in a 2D square-lattice S=1/2 quantum spin system, the J-Q ...
We suggest that a randomization of the pseudodipolar interaction in the spin-orbit-generated low-ene...
The quantum nature of electrons emerges in various exotic ways when they are put together with quant...
As liquids crystallize into solids on cooling, spins in magnets generally form periodic order. Howev...
Disorder is important in the study of quantum spin liquids, but its role on the spin dynamics remain...
The quantum nature of electrons emerges in various exotic ways when they are put together with quant...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Collective behaviour of electrons, frustration induced quantum fluctuations and entanglement in quan...
We exhibit an exactly solvable example of a SU(2) symmetric Majorana spin liquid phase, in which que...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
We analyze the effect of quenched disorder on spin-1/2 quantum magnets in which magnetic frustration...
We analyze the effect of quenched disorder on spin-1/2 quantum magnets in which magnetic frustration...
We study the effects of disorder (quenched randomness) in a two-dimensional square-lattice S=1/2 qua...
We investigate the properties of the Kitaev honeycomb model with both site dilution and exchange ran...
We study effects of disorder (randomness) in a 2D square-lattice S=1/2 quantum spin system, the J-Q ...
We suggest that a randomization of the pseudodipolar interaction in the spin-orbit-generated low-ene...
The quantum nature of electrons emerges in various exotic ways when they are put together with quant...
As liquids crystallize into solids on cooling, spins in magnets generally form periodic order. Howev...
Disorder is important in the study of quantum spin liquids, but its role on the spin dynamics remain...
The quantum nature of electrons emerges in various exotic ways when they are put together with quant...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Collective behaviour of electrons, frustration induced quantum fluctuations and entanglement in quan...
We exhibit an exactly solvable example of a SU(2) symmetric Majorana spin liquid phase, in which que...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...