We present an effective field theory approach to the fracton phases. The approach is based on the notion of a multipole algebra. It is an extension of space(time) symmetries of a charge-conserving matter that includes global symmetries responsible for the conservation of various components of the multipole moments of the charge density. We explain how to construct field theories invariant under the action of the algebra. These field theories generally break rotational invariance and exhibit anisotropic scaling. We further explain how to partially gauge the multipole algebra. Such gauging makes the symmetries responsible for the conservation of multipole moments local, while keeping rotation and translations symmetries global. It is shown th...
We study field theories with global dipole symmetries and gauge dipole symmetries. The famous Lifshi...
This work provides a general overview for the treatment of symmetries in classical field theories an...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological...
We present an effective field theory approach to the fracton phases. The approach is based on the no...
Multipole symmetries are of interest in multiple contexts, from the study of fracton phases, to none...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
Gapless fracton phases are characterized by the conservation of certain charges and their higher mom...
Fractons are gapped pointlike excitations in d=3 topological ordered phases whose motion is constrai...
We investigate the properties of foliated gauge fields and construct several foliated field theorie...
Symmetry-protected topological phases of matter have challenged our understanding of condensed matte...
Funding Information: I thank T.T. Heikkilä and especially G.E. Volovik for discussions and related e...
We consider a vector gauge theory in 2 + 1 dimensions of the type recently proposed by Radzihovsky ...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological ...
The scope of quantum field theory is extended by introducing a broader class of discrete gauge theor...
We study field theories with global dipole symmetries and gauge dipole symmetries. The famous Lifshi...
This work provides a general overview for the treatment of symmetries in classical field theories an...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological...
We present an effective field theory approach to the fracton phases. The approach is based on the no...
Multipole symmetries are of interest in multiple contexts, from the study of fracton phases, to none...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
This thesis discusses recent contributions to the theory of gapped fracton phases of matter, utilizi...
Gapless fracton phases are characterized by the conservation of certain charges and their higher mom...
Fractons are gapped pointlike excitations in d=3 topological ordered phases whose motion is constrai...
We investigate the properties of foliated gauge fields and construct several foliated field theorie...
Symmetry-protected topological phases of matter have challenged our understanding of condensed matte...
Funding Information: I thank T.T. Heikkilä and especially G.E. Volovik for discussions and related e...
We consider a vector gauge theory in 2 + 1 dimensions of the type recently proposed by Radzihovsky ...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological ...
The scope of quantum field theory is extended by introducing a broader class of discrete gauge theor...
We study field theories with global dipole symmetries and gauge dipole symmetries. The famous Lifshi...
This work provides a general overview for the treatment of symmetries in classical field theories an...
Foliated fracton order is a qualitatively new kind of phase of matter. It is similar to topological...