Matrix product states (MPS) have proven to be a very successful tool to study lattice systems with local degrees of freedom such as spins or bosons. Topologically ordered systems can support anyonic particles which are labeled by conserved topological charges and collectively carry nonlocal degrees of freedom. In this paper we extend the formalism of MPS to lattice systems of anyons. The anyonic MPS is constructed from tensors that explicitly conserve topological charge. We describe how to adapt the time-evolving block decimation (TEBD) algorithm to the anyonic MPS in order to simulate dynamics under a local and charge-conserving Hamiltonian. To demonstrate the effectiveness of the anyonic TEBD algorithm, we used it to simulate (i) the grou...
We introduce a family of quantum spin Hamiltonians on $\mathbb{Z}^2$ that can be regarded as perturb...
We introduce an algorithm that allows to simulate anyonic tight-binding Hamiltonians on two-dimensio...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons exist as pointlike particles in two dimensions and carry braid statistics, which enable inter...
Empirical thesis.Bibliography: pages 119-128.1. Introduction -- 2. Tensor network states and algorit...
We consider two-dimensional lattice models that support Ising anyonic excitations and are coupled to...
Two-dimensional systems such as quantum spin liquids or fractional quantum Hall systems exhibit anyo...
Interacting systems of anyons pose a unique challenge to condensed-matter simulations due to their n...
The low-temperature dynamics of quantum systems are dominated by the low-energy eigenstates. For two...
We consider a two-dimensional spin system that exhibits Abelian anyonic excitations. Manipulations o...
AbstractStarting from the fusion rules for the algebra SO(5)2 we construct one-dimensional lattice m...
A method to simulate the dynamics of anyons through the Jaynes-Cummings model is presented. The simu...
Starting from the fusion rules for the algebra SO(5)2 we construct one-dimensional lattice models of...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
We consider a two-dimensional spin system in a honeycomb lattice configuration that exhibits anyonic...
We introduce a family of quantum spin Hamiltonians on $\mathbb{Z}^2$ that can be regarded as perturb...
We introduce an algorithm that allows to simulate anyonic tight-binding Hamiltonians on two-dimensio...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Anyons exist as pointlike particles in two dimensions and carry braid statistics, which enable inter...
Empirical thesis.Bibliography: pages 119-128.1. Introduction -- 2. Tensor network states and algorit...
We consider two-dimensional lattice models that support Ising anyonic excitations and are coupled to...
Two-dimensional systems such as quantum spin liquids or fractional quantum Hall systems exhibit anyo...
Interacting systems of anyons pose a unique challenge to condensed-matter simulations due to their n...
The low-temperature dynamics of quantum systems are dominated by the low-energy eigenstates. For two...
We consider a two-dimensional spin system that exhibits Abelian anyonic excitations. Manipulations o...
AbstractStarting from the fusion rules for the algebra SO(5)2 we construct one-dimensional lattice m...
A method to simulate the dynamics of anyons through the Jaynes-Cummings model is presented. The simu...
Starting from the fusion rules for the algebra SO(5)2 we construct one-dimensional lattice models of...
Intermediate statistics interpolating from Bose statistics to Fermi statistics are allowed in two di...
We consider a two-dimensional spin system in a honeycomb lattice configuration that exhibits anyonic...
We introduce a family of quantum spin Hamiltonians on $\mathbb{Z}^2$ that can be regarded as perturb...
We introduce an algorithm that allows to simulate anyonic tight-binding Hamiltonians on two-dimensio...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...