Abstract In this work we propose an effective low-energy theory for a large class of 2+1 dimensional non-Abelian topological spin liquids whose edge states are conformal degrees of freedom with central charges corresponding to the coset structure su(2) k ⊕ su(2) k ′ /su(2) k+k ′ . For particular values of k ′ it furnishes the series for unitary minimal and superconformal models. These gapped phases were recently suggested to be obtained from an array of one-dimensional coupled quantum wires. In doing so we provide an explicit relationship between two distinct approaches: quantum wires and Chern-Simons bulk theory. We firstly make a direct connection between the interacting quantum wires and the corresponding conformal field theory at the ed...
Symmetry protected topological (SPT) states are short-range entangled states with symmetry. The boun...
We study 1-dimension (1-d) and 2-dimensional (2-d) quantum anti-ferromagnets. Following AKLT's theor...
In this thesis, we study the topological phases of quantum spin systems. One project is to investiga...
International audienceWe suggest a class of two-dimensional lattice spin Hamiltonians describing non...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
We investigate the edge properties of Abelian topological phases in two spatial dimensions. We disco...
This dissertation discusses some applications of conformal field theories (CFTs) in topological phas...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
Topological phases of matter are purely quantum mechanical and have no classical analogue. Most phas...
The low energy effective field theories of (2 + 1) dimensional topological phases of matter provide ...
We review the topological orders in strongly correlated quantum liquids. The charac-terization of th...
We study the edge excitations of the Chern Simons matrix theory, describing the Laughlin fluids for...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
International audienceWe theoretically address spin chain analogs of the Kitaev quantum spin model o...
Symmetry protected topological (SPT) states are short-range entangled states with symmetry. The boun...
We study 1-dimension (1-d) and 2-dimensional (2-d) quantum anti-ferromagnets. Following AKLT's theor...
In this thesis, we study the topological phases of quantum spin systems. One project is to investiga...
International audienceWe suggest a class of two-dimensional lattice spin Hamiltonians describing non...
Abelian and non-Abelian topological phases exhibiting protected chiral edge modes are ubiquitous in ...
We investigate the edge properties of Abelian topological phases in two spatial dimensions. We disco...
This dissertation discusses some applications of conformal field theories (CFTs) in topological phas...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
International audienceIn the physics of the fractional quantum Hall (FQH) effect, a zoo of Abelian t...
Topological phases of matter are purely quantum mechanical and have no classical analogue. Most phas...
The low energy effective field theories of (2 + 1) dimensional topological phases of matter provide ...
We review the topological orders in strongly correlated quantum liquids. The charac-terization of th...
We study the edge excitations of the Chern Simons matrix theory, describing the Laughlin fluids for...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
International audienceWe theoretically address spin chain analogs of the Kitaev quantum spin model o...
Symmetry protected topological (SPT) states are short-range entangled states with symmetry. The boun...
We study 1-dimension (1-d) and 2-dimensional (2-d) quantum anti-ferromagnets. Following AKLT's theor...
In this thesis, we study the topological phases of quantum spin systems. One project is to investiga...