We synthesize and partly review recent developments relating the physics of the half-filled Landau level in two dimensions to correlated surface states of topological insulators in three dimensions. The latter are in turn related to the physics of certain three-dimensional quantum spin liquid states. The resulting insights provide an interesting answer to the old question of how particle-hole symmetry is realized in composite fermion liquids. Specifically the metallic state at filling ν = 1/2—described originally in pioneering work by Halperin, Lee, and Read as a liquid of composite fermions—was proposed recently by Son to be described by a particle-hole symmetric effective field theory distinct from that in the prior literature. We show ho...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
We review the recently developed bi-partite composite fermion model, in the context of so-called Pfa...
We study composite Fermi liquid (CFL) states in the lowest Landau level (LLL) limit at a generic fil...
In a two-dimensional electron gas under a strong magnetic field, correlations generate emergent exci...
We study the interplay of particle-hole symmetry and fermion-vortex duality in multicomponent half-f...
We show here that an extension of the Hamiltonian theory developed by us over the years furnishes a ...
We introduce exotic gapless states—“composite Dirac liquids”—that can appear at a strongly interacti...
We introduce exotic gapless states—“composite Dirac liquids”—that can appear at a strongly interacti...
We introduce a particle-hole-symmetric metallic state of bosons in a magnetic field at odd-integer f...
Under appropriate conditions electron-hole symmetry should apply to a partially filled Landau level ...
While an ordinary Fermi sea is perturbatively robust to interactions, the paradigmatic composite-fer...
Topological phases of matter are purely quantum mechanical and have no classical analogue. Most phas...
When a fermionic quantum Hall system is projected into the lowest Landau level, there is an exact pa...
Even though composite fermions in the fractional quantum Hall liquid are well established, it is not...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
We review the recently developed bi-partite composite fermion model, in the context of so-called Pfa...
We study composite Fermi liquid (CFL) states in the lowest Landau level (LLL) limit at a generic fil...
In a two-dimensional electron gas under a strong magnetic field, correlations generate emergent exci...
We study the interplay of particle-hole symmetry and fermion-vortex duality in multicomponent half-f...
We show here that an extension of the Hamiltonian theory developed by us over the years furnishes a ...
We introduce exotic gapless states—“composite Dirac liquids”—that can appear at a strongly interacti...
We introduce exotic gapless states—“composite Dirac liquids”—that can appear at a strongly interacti...
We introduce a particle-hole-symmetric metallic state of bosons in a magnetic field at odd-integer f...
Under appropriate conditions electron-hole symmetry should apply to a partially filled Landau level ...
While an ordinary Fermi sea is perturbatively robust to interactions, the paradigmatic composite-fer...
Topological phases of matter are purely quantum mechanical and have no classical analogue. Most phas...
When a fermionic quantum Hall system is projected into the lowest Landau level, there is an exact pa...
Even though composite fermions in the fractional quantum Hall liquid are well established, it is not...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
The half-filled Landau level is expected to be approximately particle-hole symmetric, which requires...
We review the recently developed bi-partite composite fermion model, in the context of so-called Pfa...