Over the last years, Projected Entangled Pair States have demonstrated great power for the study of many body systems, as they naturally describe ground states of gapped many body Hamiltonians, and suggest a constructive way to encode and classify their symmetries. The PEPS study is not only limited to global symmetries, but has also been extended and applied for local symmetries, allowing to use them for the description of states in lattice gauge theories. In this paper we discuss PEPS with a local, SU(2) gauge symmetry, and demonstrate the use of PEPS features and techniques for the study of a simple family of many body states with a non-Abelian gauge symmetry. We present, in particular, the construction of fermionic PEPS able to describe...
The projected entangled pair state (PEPS) representation of quantum states on two-dimensional lattic...
Projected entangled pair states (PEPS) are used in practice as an efficient parametrization of the s...
International audienceWe study the parton construction of chiral spin liquids (CSLs) using projected...
Over the last years, Projected Entangled Pair States have demonstrated great power for the study of ...
We present a new characterization of quantum states, what we call Projected Entangled-Pair States (P...
We present a new characterization of quantum states, what we call Projected Entangled-Pair States (P...
Tensor network states, and in particular projected entangled pair states (PEPS) have been a strong a...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We explain how to implement, in the context of projected entangled-pair states (PEPSs), the general ...
We explore in detail the implementation of arbitrary abelian and non-abelian symmetries in the sett...
We study resonating valence bond (RVB) states in the projected entangled pair states (PEPS) formalis...
In this thesis, we consider projected entangled pair state (PEPS) models as a framework for two-dime...
We introduce a family of states, the fermionic projected entangled pair states (fPEPS), which descri...
The projected entangled pair state (PEPS) representation of quantum states on two-dimensional lattic...
Projected entangled pair states (PEPS) are used in practice as an efficient parametrization of the s...
International audienceWe study the parton construction of chiral spin liquids (CSLs) using projected...
Over the last years, Projected Entangled Pair States have demonstrated great power for the study of ...
We present a new characterization of quantum states, what we call Projected Entangled-Pair States (P...
We present a new characterization of quantum states, what we call Projected Entangled-Pair States (P...
Tensor network states, and in particular projected entangled pair states (PEPS) have been a strong a...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We explain how to implement, in the context of projected entangled-pair states (PEPSs), the general ...
We explore in detail the implementation of arbitrary abelian and non-abelian symmetries in the sett...
We study resonating valence bond (RVB) states in the projected entangled pair states (PEPS) formalis...
In this thesis, we consider projected entangled pair state (PEPS) models as a framework for two-dime...
We introduce a family of states, the fermionic projected entangled pair states (fPEPS), which descri...
The projected entangled pair state (PEPS) representation of quantum states on two-dimensional lattic...
Projected entangled pair states (PEPS) are used in practice as an efficient parametrization of the s...
International audienceWe study the parton construction of chiral spin liquids (CSLs) using projected...