The low-temperature dynamics of quantum systems are dominated by the low-energy eigenstates. For two-dimensional systems in particular, exotic phenomena such as topological order and anyon excitations can emerge. While a complete low-energy description of strongly correlated systems is hard to obtain, essential information about the elementary excitations is encoded in the eigenvalue structure of the quantum transfer matrix. Here we study the transfer matrix of topological quantum systems using the tensor network formalism and demonstrate that topological quantum order requires a particular type of 'symmetry breaking' for the fixed point subspace. We also relate physical anyon excitations to domain-wall excitations at the level of the trans...
Quantum gates for the manipulation of topological qubits rely on interactions between non-Abelian an...
Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-sys...
Condensed matter physics rests its foundation on the notion of universal phases of matter. As it is ...
The low-temperature dynamics of quantum systems are dominated by the low-energy eigenstates. For two...
We develop methods to probe the excitation spectrum of topological phases of matter in two spatial d...
Topological ordered phases are related to changes in the properties of their quasiparticle excitatio...
Anyon condensation forms a mechanism that allows us to relate different topological phases. We study...
The combination of quantum effects and interactions in quantum many-body systems can result in exoti...
Strong quantum correlations between many particles in low dimensions lead to emergence of interestin...
Empirical thesis.Bibliography: pages 119-128.1. Introduction -- 2. Tensor network states and algorit...
Topological order has proven a useful concept to describe quantum phase transitions which are not ca...
We study quantum phase transitions and the critical behavior of topologically-ordered phases by cons...
The focus of our investigations in this thesis is quantum spin systems in two dimensions. We examine...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
Topological phases are gapped quantum phases of matter classified beyond the paradigm of Landau's sy...
Quantum gates for the manipulation of topological qubits rely on interactions between non-Abelian an...
Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-sys...
Condensed matter physics rests its foundation on the notion of universal phases of matter. As it is ...
The low-temperature dynamics of quantum systems are dominated by the low-energy eigenstates. For two...
We develop methods to probe the excitation spectrum of topological phases of matter in two spatial d...
Topological ordered phases are related to changes in the properties of their quasiparticle excitatio...
Anyon condensation forms a mechanism that allows us to relate different topological phases. We study...
The combination of quantum effects and interactions in quantum many-body systems can result in exoti...
Strong quantum correlations between many particles in low dimensions lead to emergence of interestin...
Empirical thesis.Bibliography: pages 119-128.1. Introduction -- 2. Tensor network states and algorit...
Topological order has proven a useful concept to describe quantum phase transitions which are not ca...
We study quantum phase transitions and the critical behavior of topologically-ordered phases by cons...
The focus of our investigations in this thesis is quantum spin systems in two dimensions. We examine...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
Topological phases are gapped quantum phases of matter classified beyond the paradigm of Landau's sy...
Quantum gates for the manipulation of topological qubits rely on interactions between non-Abelian an...
Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-sys...
Condensed matter physics rests its foundation on the notion of universal phases of matter. As it is ...