Fracton topological phases host fractionalized topological quasiparticles with restricted mobility, with promising applications to fault-tolerant quantum computation. While a variety of exactly solvable fracton models have been proposed, there is a need for platforms to realize them experimentally. We show that a rich set of fracton phases emerges in interacting Majorana band models whose building blocks are within experimental reach. Specifically, our Majorana constructions overcome a principal obstacle, namely, the implementation of the complicated spin cluster interactions underlying fracton stabilizer codes. The basic building blocks of the proposed constructions include Coulomb blockaded Majorana islands and weak interisland Majorana h...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
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 ...
Fracton topological phases host fractionalized topological quasiparticles with restricted mobility, ...
We show that interactions can drive a class of higher order topological superconductors (HOTSCs) int...
We establish the presence of foliated fracton order in the Majorana checkerboard model. In particula...
Fractons are a new type of quasiparticle which are immobile in isolation, but can often move by form...
We study novel three-dimensional gapped quantum phases of matter which support quasiparticles with r...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Fracton models provide examples of novel gapped quantum phases of matter that host intrinsically imm...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
We consider fermionic systems in which fermion parity is conserved within rigid subsystems, and desc...
Bose-Hubbard models are simple paradigmatic lattice models used to study dynamics and phases of quan...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
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 ...
Fracton topological phases host fractionalized topological quasiparticles with restricted mobility, ...
We show that interactions can drive a class of higher order topological superconductors (HOTSCs) int...
We establish the presence of foliated fracton order in the Majorana checkerboard model. In particula...
Fractons are a new type of quasiparticle which are immobile in isolation, but can often move by form...
We study novel three-dimensional gapped quantum phases of matter which support quasiparticles with r...
Fracton phases exhibit striking behavior which appears to render them beyond the standard topologica...
We introduce a generalization of conventional lattice gauge theory to describe fracton topological p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Fracton models provide examples of novel gapped quantum phases of matter that host intrinsically imm...
In this work, we develop a coupled layer construction of fracton topological orders in d=3 spatial d...
We consider fermionic systems in which fermion parity is conserved within rigid subsystems, and desc...
Bose-Hubbard models are simple paradigmatic lattice models used to study dynamics and phases of quan...
Fracton models, a collection of exotic gapped lattice Hamiltonians recently discovered in three spat...
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 ...