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String-net condensation: A physical mechanism for topological phases

Physical Review B · 2005 · Vol. 71(4)
Michael LevinXiao-Gang Wen

Abstract

We show that quantum systems of extended objects naturally give rise to a large class of exotic phases---namely topological phases. These phases occur when extended objects, called ``string-nets,'' become highly fluctuating and condense. We construct a large class of exactly soluble 2D spin Hamiltonians whose ground states are string-net condensed. Each ground state corresponds to a different parity invariant topological phase. The models reveal the mathematical framework underlying topological phases: tensor category theory. One of the Hamiltonians---a spin-$1∕2$ system on the honeycomb lattice---is a simple theoretical realization of a universal fault tolerant quantum computer. The higher dimensional case also yields an interesting result: we find that 3D string-net condensation naturally gives rise to both emergent gauge bosons and emergent fermions. Thus, string-net condensation provides a mechanism for unifying gauge bosons and fermions in 3 and higher dimensions.

Physics of Superconductivity and MagnetismQuantum many-body systemsQuantum and electron transport phenomenaPhysicsFermionTopology (electrical circuits)Theoretical physicsTopological quantum numberString (physics)BosonTopological orderQuantumQuantum mechanics
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References
Quantum field theory and the Jones polynomial
Communications in Mathematical Physics · 1989 · 4,663 citations
Fault-tolerant quantum computation by anyons
Annals of Physics · 2003 · 7,123 citations
Hamiltonian formulation of Wilson's lattice gauge theories
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1975 · 1,936 citations
Classical and quantum conformal field theory
Communications in Mathematical Physics · 1989 · 1,290 citations
Confinement of quarks
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1974 · 4,223 citations
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