Fracton phases of matter are gapped phases of matter that, by dint of their sensitivity to UV data, demand non-standard quantum field theories to describe them in the IR. Two such approaches are foliated quantum theory and exotic field theory. In this paper, we explicitly construct a map from one to the other and work out several examples. In particular, we recover the equivalence between the foliated and exotic fractonic BF theories recently demonstrated at the level of operator correspondence. We also demonstrate the equivalence of toric code layers and the anisotropic model with lineons and planons to the foliated BF theory with one and two foliations, respectively. Finally, we derive new exotic field theories that provide simple descrip...
We study out-of-equilibrium dynamics caused by global quantum quenches in fractonic scalar field the...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
The scope of quantum field theory is extended by introducing a broader class of discrete gauge theor...
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...
Fractons are a new type of quasiparticle which are immobile in isolation, but can often move by form...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
In the study of three-dimensional gapped models, two-dimensional gapped states should be considered ...
Fractional excitations in fracton models exhibit novel features not present in conventional topologi...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological...
Fracton models exhibit a variety of exotic properties and lie beyond the conventional framework of g...
We study novel three-dimensional gapped quantum phases of matter which support quasiparticles with r...
Fracton topological phases host fractionalized topological quasiparticles with restricted mobility, ...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
We study out-of-equilibrium dynamics caused by global quantum quenches in fractonic scalar field the...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
The scope of quantum field theory is extended by introducing a broader class of discrete gauge theor...
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...
Fractons are a new type of quasiparticle which are immobile in isolation, but can often move by form...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
In the study of three-dimensional gapped models, two-dimensional gapped states should be considered ...
Fractional excitations in fracton models exhibit novel features not present in conventional topologi...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological...
Fracton models exhibit a variety of exotic properties and lie beyond the conventional framework of g...
We study novel three-dimensional gapped quantum phases of matter which support quasiparticles with r...
Fracton topological phases host fractionalized topological quasiparticles with restricted mobility, ...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
We study out-of-equilibrium dynamics caused by global quantum quenches in fractonic scalar field the...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
The scope of quantum field theory is extended by introducing a broader class of discrete gauge theor...