One of the hallmarks of quantum statistics, tightly entwined with the concept of topological phases of matter, is the prediction of anyons. Although anyons are predicted to be realized in certain fractional quantum Hall systems, they have not yet been unambiguously detected in experiment. Here we introduce a simple quantum impurity model, where bosonic or fermionic impurities turn into anyons as a consequence of their interaction with the surrounding many-particle bath. A cloud of phonons dresses each impurity in such a way that it effectively attaches fluxes or vortices to it and thereby converts it into an Abelian anyon. The corresponding quantum impurity model, first, provides a different approach to the numerical solution of the many-an...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons are particles with quantum statistics different from those of bosons and fermions, the only k...
This thesis represents a body of work investigating the physics of strongly interacting quantum part...
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 ...
We demonstrate that identical impurities immersed in a two-dimensional many-particle bath can be vie...
Recently it was shown that anyons on the two-sphere naturally arise from a system of molecular impur...
Anyons are exotic quasiparticles with fractional charge that can emerge as fundamental excitations o...
In three spatial dimensions, particles are classified into bosons and fermions. Bosons have integer ...
Recently it was shown that anyons on the two-sphere naturally arise from a system of molecular impur...
We study a system of anyons with the statistics parameter θ=π/p, where p is a large integer. We use ...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
We study a theoretical model for synthetic anyons in a noninteracting quantum many-body system. Synt...
We propose feasible scenarios for revealing the modified exchange statistics in one-dimensional anyo...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons are particles with quantum statistics different from those of bosons and fermions, the only k...
This thesis represents a body of work investigating the physics of strongly interacting quantum part...
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 ...
We demonstrate that identical impurities immersed in a two-dimensional many-particle bath can be vie...
Recently it was shown that anyons on the two-sphere naturally arise from a system of molecular impur...
Anyons are exotic quasiparticles with fractional charge that can emerge as fundamental excitations o...
In three spatial dimensions, particles are classified into bosons and fermions. Bosons have integer ...
Recently it was shown that anyons on the two-sphere naturally arise from a system of molecular impur...
We study a system of anyons with the statistics parameter θ=π/p, where p is a large integer. We use ...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
We study a theoretical model for synthetic anyons in a noninteracting quantum many-body system. Synt...
We propose feasible scenarios for revealing the modified exchange statistics in one-dimensional anyo...
Quantum statistics is an important aspect of quantum mechanics and it lays down the rules for identi...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons are particles with quantum statistics different from those of bosons and fermions, the only k...
This thesis represents a body of work investigating the physics of strongly interacting quantum part...