Within condensed matter physics, systems with strong electronic correlations give rise to fascinating phenomena which characteristically require a physical description beyond a one-electron theory, such as high temperature superconductivity, or Mott metal-insulator transitions. In this thesis, a class of strongly correlated electron systems is considered. These systems exhibit fractionally charged excitations with charge +e/2 or -e/2 in two dimensions (2D) and three dimensions (3D), a consequence of both strong correlations and the geometrical frustration of the interactions on the underlying lattices. Such geometrically frustrated systems are typically characterized by a high density of low-lying excitations, leading to various interestin...
The energy dispersion of fermions or bosons vanishes in momentum space if destructive quantum interf...
We would like to present our work on a new type of lattice which is called Triangular Kagome Lattice...
By using first-principles calculations we put forward the Cu-dicyanoanthracene lattice as a platform...
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...
Strongly correlated systems on geometrically frustrated lattices can stabilize a large number of int...
Strongly correlated systems on geometrically frustrated lattices can stabilize a large number of int...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
Abstract. Condensed matter exhibits a wide variety of exotic emergent phenomena such as the fraction...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
Within this thesis we discuss excitations in spin systems with competing interactions and orbital de...
Condensed matter exhibits a wide variety of exotic emergent phenomena such as the fractional quantum...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
The energy dispersion of fermions or bosons vanishes in momentum space if destructive quantum interf...
We would like to present our work on a new type of lattice which is called Triangular Kagome Lattice...
By using first-principles calculations we put forward the Cu-dicyanoanthracene lattice as a platform...
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...
Strongly correlated systems on geometrically frustrated lattices can stabilize a large number of int...
Strongly correlated systems on geometrically frustrated lattices can stabilize a large number of int...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
Abstract. Condensed matter exhibits a wide variety of exotic emergent phenomena such as the fraction...
The interplay among symmetry, topology and condensed matter systems has deepened our understandings ...
Within this thesis we discuss excitations in spin systems with competing interactions and orbital de...
Condensed matter exhibits a wide variety of exotic emergent phenomena such as the fractional quantum...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
Fractionalization is a ubiquitous phenomenon in topological states of matter. In this work, we study...
The energy dispersion of fermions or bosons vanishes in momentum space if destructive quantum interf...
We would like to present our work on a new type of lattice which is called Triangular Kagome Lattice...
By using first-principles calculations we put forward the Cu-dicyanoanthracene lattice as a platform...