Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological order, but with the fundamental difference that a layered structure, referred to as a foliation, plays an essential role and determines the mobility restrictions of the topological excitations. In this work, we introduce a new kind of field theory to describe these phases: a foliated field theory. We also introduce a new lattice model and string-membrane-net condensation picture of these phases, which is analogous to the string-net condensation picture of topological order
condensation Extended objects, such as strings and membranes, have been studied for many years in th...
Fractons are gapped pointlike excitations in d=3 topological ordered phases whose motion is constrai...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological ...
We investigate the properties of foliated gauge fields and construct several foliated field theorie...
Fracton phases of matter are gapped phases of matter that, by dint of their sensitivity to UV data, ...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
We describe a family of phase transitions connecting phases of differing nontrivial topological orde...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
We present an effective field theory approach to the fracton phases. The approach is based on the no...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
Finding suitable indicators for characterizing quantum phase transitions plays an important role in ...
The Lieb-Schultz-Mattis (LSM) theorem implies that gapped phases of matter must satisfy nontrivial c...
We describe a family of phase transitions connecting phases of differing non-trivial topological or...
condensation Extended objects, such as strings and membranes, have been studied for many years in th...
Fractons are gapped pointlike excitations in d=3 topological ordered phases whose motion is constrai...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological ...
We investigate the properties of foliated gauge fields and construct several foliated field theorie...
Fracton phases of matter are gapped phases of matter that, by dint of their sensitivity to UV data, ...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
We describe a family of phase transitions connecting phases of differing nontrivial topological orde...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
We present an effective field theory approach to the fracton phases. The approach is based on the no...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
Finding suitable indicators for characterizing quantum phase transitions plays an important role in ...
The Lieb-Schultz-Mattis (LSM) theorem implies that gapped phases of matter must satisfy nontrivial c...
We describe a family of phase transitions connecting phases of differing non-trivial topological or...
condensation Extended objects, such as strings and membranes, have been studied for many years in th...
Fractons are gapped pointlike excitations in d=3 topological ordered phases whose motion is constrai...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...