We study a model of strongly correlated electrons on the square lattice which exhibits charge frustration and quantum critical behavior. The potential is tuned to make the interactions supersymmetric. We establish a rigorous mathematical result which relates quantum ground states to certain tiling configurations on the square lattice. For periodic boundary conditions this relation implies that the number of ground states grows exponentially with the linear dimensions of the system. We present substantial analytic and numerical evidence that for open boundary conditions the system has gapless edge modes
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We study a model for itinerant, strongly interacting fermions where a judicious tuning of the inter...
Abstract—We show that a 2D system of free electrons on a square lattice with hoping between more tha...
The existence of definite orders in frustrated quantum systems is related rigorously to the occurren...
International audienceWe consider quantum critical points in which quantum fluctuations associated w...
Within condensed matter physics, systems with strong electronic correlations give rise to fascinatin...
Within condensed matter physics, systems with strong electronic correlations give rise to fascinatin...
We investigate the persistence of spectral gaps of one-dimensional frustration free quantum lattice ...
We study a model for itinerant, strongly interacting fermions where a judicious tuning of the intera...
We present very general techniques for investigating strongly correlated lattice fermions in one dim...
A model of strongly correlated spinless fermions on a checkerboard lattice is mapped onto a quantum ...
We review recent results on lattice models for spin-less fermions with strong repulsive interactions...
We present a new model describing strongly correlated electrons on a general d-dimensional lattice. ...
A model of strongly correlated spinless fermions on a checkerboard lattice is mapped onto a quantum ...
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We study a model for itinerant, strongly interacting fermions where a judicious tuning of the inter...
Abstract—We show that a 2D system of free electrons on a square lattice with hoping between more tha...
The existence of definite orders in frustrated quantum systems is related rigorously to the occurren...
International audienceWe consider quantum critical points in which quantum fluctuations associated w...
Within condensed matter physics, systems with strong electronic correlations give rise to fascinatin...
Within condensed matter physics, systems with strong electronic correlations give rise to fascinatin...
We investigate the persistence of spectral gaps of one-dimensional frustration free quantum lattice ...
We study a model for itinerant, strongly interacting fermions where a judicious tuning of the intera...
We present very general techniques for investigating strongly correlated lattice fermions in one dim...
A model of strongly correlated spinless fermions on a checkerboard lattice is mapped onto a quantum ...
We review recent results on lattice models for spin-less fermions with strong repulsive interactions...
We present a new model describing strongly correlated electrons on a general d-dimensional lattice. ...
A model of strongly correlated spinless fermions on a checkerboard lattice is mapped onto a quantum ...
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We consider fermionic fully packed loop and quantum dimer models which serve as effective low-energy...
We study a model for itinerant, strongly interacting fermions where a judicious tuning of the inter...