We study a problem of interacting fractional charges with the J(1)-J(2)-J(3) Ising model on a checkerboard lattice under magnetic field. As a result of the interplay between repulsive interactions and particle density tuning by a magnetic field, the fractional charges form a classical spin liquid (CSL) phase. The CSL phase is composed of degenerate spin configurations, which can be mapped to the trimer covering of dual square lattice. The CSL state shows macroscopic ground-state entropy, implying the emergence of a novel quantum spin liquid phase when quantum fluctuations are turned on. In addition to the CSL phase, the system exhibits multiple magnetization plateaus, reflecting the fertile screening processes of dimer-monomer mixtures
We study the magnetic excitations on top of the plateaux states recently discovered in spin-Peierls ...
Using quantum Monte Carlo, exact diagonalization, and perturbation theory, we study the spectrum of ...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Interactions between the microscopic constituents of a solid---a many-body system--- can lead to nov...
Interactions between the microscopic constituents of a solid---a many-body system--- can lead to nov...
Frustration – namely the presence of competing interactions – gives rise to highly complex effects i...
We employ a variational Monte Carlo approach to efficiently obtain the dynamical structure factor fo...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
We study the fractionalization and confinement of excitations in two frustrated magnets: S = 1/2 ka...
We study interacting bosons on a lattice in a magnetic field. When the number of flux quanta per pl...
We construct explicit examples of microscopic models that stabilize a variety of fractionalized phas...
It is well established that at low energies one-dimensional (1D) fermionic systems are described by ...
We study the magnetic excitations on top of the plateaux states recently discovered in spin-Peierls ...
Using quantum Monte Carlo, exact diagonalization, and perturbation theory, we study the spectrum of ...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Interactions between the microscopic constituents of a solid---a many-body system--- can lead to nov...
Interactions between the microscopic constituents of a solid---a many-body system--- can lead to nov...
Frustration – namely the presence of competing interactions – gives rise to highly complex effects i...
We employ a variational Monte Carlo approach to efficiently obtain the dynamical structure factor fo...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
Quantum spin systems are by now known to exhibit a large number of different classes of spin liquid ...
We study the fractionalization and confinement of excitations in two frustrated magnets: S = 1/2 ka...
We study interacting bosons on a lattice in a magnetic field. When the number of flux quanta per pl...
We construct explicit examples of microscopic models that stabilize a variety of fractionalized phas...
It is well established that at low energies one-dimensional (1D) fermionic systems are described by ...
We study the magnetic excitations on top of the plateaux states recently discovered in spin-Peierls ...
Using quantum Monte Carlo, exact diagonalization, and perturbation theory, we study the spectrum of ...
Spin liquids are collective phases of quantum matter that have eluded discovery in correlated magnet...