Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid phases. By contrast, for classical Heisenberg models, only one kind of fractionalized spin liquid phase, the so-called Coulomb or U(1) spin liquid, has until recently been identified: This exhibits algebraic spin correlations and impurity moments, "orphan spins," whose size is a fraction of that of the underlying microscopic degrees of freedom. Here, we present two Heisenberg models exhibiting fractionalization in combination with exponentially decaying correlations. These can be thought of as a classical continuous spin version of a Z(2) spin liquid. Our work suggests a systematic search and classification of classical spin liquids as a wort...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...
Spin liquids are collective phases of quantum matter which have eluded discovery in correlated magne...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
Based on exact numerical calculations, we show that the generalized kagome spin model in the easy-ax...
Due to strong geometric frustration and quantum fluctuation, the S = 1/2 quantum Heisenberg antiferr...
Pursuing fractionalized particles that do not bear properties of conventional measurable objects, ex...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
We study the spin-1/2 Heisenberg model on the triangular lattice with the antiferromagnetic first- ...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Quantum spin liquids, systems in which quantum fluctuations prevent the magnetic ordering of the spi...
Quantum spin liquids, systems in which quantum fluctuations prevent the magnetic ordering of the spi...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
We study a problem of interacting fractional charges with the J(1)-J(2)-J(3) Ising model on a checke...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...
Spin liquids are collective phases of quantum matter which have eluded discovery in correlated magne...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
Based on exact numerical calculations, we show that the generalized kagome spin model in the easy-ax...
Due to strong geometric frustration and quantum fluctuation, the S = 1/2 quantum Heisenberg antiferr...
Pursuing fractionalized particles that do not bear properties of conventional measurable objects, ex...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
We study the spin-1/2 Heisenberg model on the triangular lattice with the antiferromagnetic first- ...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Quantum spin liquids, systems in which quantum fluctuations prevent the magnetic ordering of the spi...
Quantum spin liquids, systems in which quantum fluctuations prevent the magnetic ordering of the spi...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
We study a problem of interacting fractional charges with the J(1)-J(2)-J(3) Ising model on a checke...
The anyonic excitations of a spin liquid can feature fractional quantum numbers under space group sy...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...
Spin liquids are collective phases of quantum matter which have eluded discovery in correlated magne...