We propose a simple scheme for mimicking the physics of one-dimensional anyons in an optical-lattice experiment. It relies on a bosonic representation of the anyonic Hubbard model to be realized via lattice-shaking-induced resonant tunneling against potential offsets, which are created by a combination of a lattice tilt and strong on-site interactions. No lasers additional to those used for the creation of the optical lattice are required. We also discuss experimental signatures of the continuous interpolation between bosons and fermions when the statistical angle theta is varied from 0 to pi. Whereas the real-space density of the bosonic atoms corresponds directly to that of the simulated anyonic model, this is not the case for the momentu...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...
We establish the theoretical feasibility of direct analog simulation of the compact U(1) lattice ga...
The onset of Bloch oscillations (BOs) for two correlated anyons hopping on a one-dimensional lattice...
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...
We propose feasible scenarios for revealing the modified exchange statistics in one-dimensional anyo...
Abstract. Anyons can be considered to be a third class of particles with nontrivial exchange statis...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
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...
Anyons-particles carrying fractional statistics that interpolate between bosons and fermions-have be...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
We study a system of dipolar bosons in a one-dimensional optical lattice using exact diagonalization...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...
We establish the theoretical feasibility of direct analog simulation of the compact U(1) lattice ga...
The onset of Bloch oscillations (BOs) for two correlated anyons hopping on a one-dimensional lattice...
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...
We propose feasible scenarios for revealing the modified exchange statistics in one-dimensional anyo...
Abstract. Anyons can be considered to be a third class of particles with nontrivial exchange statis...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
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...
Anyons-particles carrying fractional statistics that interpolate between bosons and fermions-have be...
One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases ...
We study a system of dipolar bosons in a one-dimensional optical lattice using exact diagonalization...
The present thesis is devoted to quantum simulation of strongly interacting systems of ultra-cold at...
We establish the theoretical feasibility of direct analog simulation of the compact U(1) lattice ga...
The onset of Bloch oscillations (BOs) for two correlated anyons hopping on a one-dimensional lattice...