Quantum spin liquids (QSLs) are long-range entangled states of quantum magnets which lie beyond the Landau paradigm of classifying phases of matter via broken symmetries. A physical route to arriving at QSLs is via frustration-induced quantum melting of ordered states such as valence bond crystals or magnetic orders. Here, we show, using extensive exact diagonalization (ED) and density-matrix renormalization group (DMRG) studies of concrete $SU(2)$ invariant spin models on honeycomb, triangular and square lattices, that chiral spin liquids (CSLs) emerge as descendants of triple-$Q$ spin crystals with tetrahedral magnetic order and a large scalar spin chirality. Such ordered-to-CSL melting transitions may yield lattice realizations of effect...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Quantum spin liquids are materials that feature quantum entangled spin correlations and avoid magnet...
Motivated by cold atom experiments on Chern insulators, we study the honeycomb lattice Haldane-Hubba...
The breaking of chiral and time-reversal symmetries provides a pathway to exotic quantum phenomena a...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
Motivated by experimental studies that have found signatures of a quantum spin liquid phase in organ...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
Motivated by experimental studies that have found signatures of a quantum spin liquid phase in organ...
Topological insulator phases of non-interacting particles have been generalized from periodic crysta...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Quantum spin liquids are materials that feature quantum entangled spin correlations and avoid magnet...
Motivated by cold atom experiments on Chern insulators, we study the honeycomb lattice Haldane-Hubba...
The breaking of chiral and time-reversal symmetries provides a pathway to exotic quantum phenomena a...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
Motivated by experimental studies that have found signatures of a quantum spin liquid phase in organ...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
The understanding and predicting of novel phenomena in magnetic materials is an important theme in c...
Motivated by experimental studies that have found signatures of a quantum spin liquid phase in organ...
Topological insulator phases of non-interacting particles have been generalized from periodic crysta...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
Quantum magnetic materials provide pathways to exotic spin-disordered phases. We study two broad cla...
Quantum spin liquids are materials that feature quantum entangled spin correlations and avoid magnet...