We propose feasible scenarios for revealing the modified exchange statistics in one-dimensional anyon models in optical lattices based on an extension of the multicolor lattice-depth modulation scheme introduced in [Phys. Rev. A 94, 023615 (2016)]. We show that the fast modulation of a two-component fermionic lattice gas in the presence a magnetic field gradient, in combination with additional resonant microwave fields, allows for the quantum simulation of hardcore anyon models with periodic boundary conditions. Such a semisynthetic ring setup allows for realizing an interferometric arrangement sensitive to the anyonic statistics. Moreover, we show as well that simple expansion experiments may reveal the formation of anomalously bound pairs...
Anyons are particles with intermediate quantum statistics whose wave function acquires a phase eiθ b...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
We study a tight-binding model for anyons on a square lattice using a self-consistent mean-field the...
We propose a simple scheme for mimicking the physics of one-dimensional anyons in an optical-lattice...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
Raman-assisted hopping may be used to realize the anyon Hubbard model in one-dimensional optical lat...
Abstract. Anyons can be considered to be a third class of particles with nontrivial exchange statis...
We show that a multicolor modulation of the depth of an optical lattice allows for a flexible indepe...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
Interacting systems of anyons pose a unique challenge to condensed-matter simulations due to their n...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons-particles carrying fractional statistics that interpolate between bosons and fermions-have be...
Anyons are particles with intermediate quantum statistics whose wave function acquires a phase eiθ b...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
We study a tight-binding model for anyons on a square lattice using a self-consistent mean-field the...
We propose a simple scheme for mimicking the physics of one-dimensional anyons in an optical-lattice...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
Raman-assisted hopping may be used to realize the anyon Hubbard model in one-dimensional optical lat...
Abstract. Anyons can be considered to be a third class of particles with nontrivial exchange statis...
We show that a multicolor modulation of the depth of an optical lattice allows for a flexible indepe...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
Interacting systems of anyons pose a unique challenge to condensed-matter simulations due to their n...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons-particles carrying fractional statistics that interpolate between bosons and fermions-have be...
Anyons are particles with intermediate quantum statistics whose wave function acquires a phase eiθ b...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
We study a tight-binding model for anyons on a square lattice using a self-consistent mean-field the...