We propose a simple theoretical construction of certain short-range entangled phases of interacting fermions, by putting the bound states of three fermions (which we refer to as clustons) into topological bands. We give examples in two and three dimensions, and show that they are distinct from any free fermion state. We further argue that these states can be viewed as combinations of certain free fermion topological states and bosonic symmetry-protected topological (SPT) states. This provides a conceptually simple understanding of various SPT phases, and the possibility of realizing them in cold atom systems. New parton constructions of these SPT phases in purely bosonic systems are proposed. We also discuss a related anomaly in two dimensi...
Symmetry protected topological (SPT) phases are gapped short-range-entangled quantum phases with a s...
We propose a general approach to construct symmetry protected topological (SPT) states (i.e., the sh...
Thesis (Ph.D.)--University of Washington, 2021Classical computers have been instrumental to our unde...
Symmetry protected topological (SPT) phases are a minimal generalization of the concept of topologic...
As condensed matter theorists, we always try to seek new quantum phases of matter that are not possi...
We construct an exactly soluble Hamiltonian on the D=3 cubic lattice, whose ground state is a topolo...
We describe recent progress in our understanding of the interplay between interactions, symmetry, an...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
We discuss bosonization and Fermionic Short-Range-Entangled (FSRE) phases of matter in one, two, and...
We study a topological phase of interacting bosons in (3 + 1) dimensions that is protected by charge...
The concept of topology in condensed matter physics has led to the discovery of rich and exotic phys...
Symmetry-protected topological (SPT) phases are bulk-gapped quantum phases with symmetries, which ha...
The study of topological states has become a major research focus of contemporary physics. This thes...
In this thesis, we study quantum phase transitions and topological phases in low dimensional fermion...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
Symmetry protected topological (SPT) phases are gapped short-range-entangled quantum phases with a s...
We propose a general approach to construct symmetry protected topological (SPT) states (i.e., the sh...
Thesis (Ph.D.)--University of Washington, 2021Classical computers have been instrumental to our unde...
Symmetry protected topological (SPT) phases are a minimal generalization of the concept of topologic...
As condensed matter theorists, we always try to seek new quantum phases of matter that are not possi...
We construct an exactly soluble Hamiltonian on the D=3 cubic lattice, whose ground state is a topolo...
We describe recent progress in our understanding of the interplay between interactions, symmetry, an...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
We discuss bosonization and Fermionic Short-Range-Entangled (FSRE) phases of matter in one, two, and...
We study a topological phase of interacting bosons in (3 + 1) dimensions that is protected by charge...
The concept of topology in condensed matter physics has led to the discovery of rich and exotic phys...
Symmetry-protected topological (SPT) phases are bulk-gapped quantum phases with symmetries, which ha...
The study of topological states has become a major research focus of contemporary physics. This thes...
In this thesis, we study quantum phase transitions and topological phases in low dimensional fermion...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
Symmetry protected topological (SPT) phases are gapped short-range-entangled quantum phases with a s...
We propose a general approach to construct symmetry protected topological (SPT) states (i.e., the sh...
Thesis (Ph.D.)--University of Washington, 2021Classical computers have been instrumental to our unde...