Evolution of Bilayer Quantum Hall Ferromagnet
arXiv:cond-mat/0204461 · doi:10.1103/PhysRevB.66.153310
Abstract
The natures of the ground state in a bilayer quantum Hall system at a variety of layer spacing are investigated. At small layer separations the system exhibits spontaneous interlayer phase coherence. It is claimed that the Halperin's (1,1,1) state is not relevant in the incompressible regime near the incompressible to compressible transition point in which the Josephson-like effect was observed. The two-particle correlation function shows the deflated correlation hole at this regime. An effective model that can give a good approximation to the ground state is proposed. A connection to the modified composite fermion theory is discussed.
Cited by in corpus (23)
- Phase Diagram for Quantum Hall Bilayers at
- Coexistence of Composite-Bosons and Composite-Fermions in nu=1/2 + 1/2 Quantum Hall Bilayers
- Entanglement Spectrum and Entanglement Thermodynamics of Quantum Hall Bilayers at nu=1
- Paired composite fermion phase of quantum Hall bilayers at ν= 1/2 + 1/2
- Spin Degree of Freedom in the nu =1 Bilayer Electron System Investigated via Nuclear Spin Relaxation
- Trial Wavefunctions for ν= 1/2 + 1/2 Quantum Hall Bilayers
- Fractional quantum Hall effects in bilayers in the presence of inter-layer tunneling and charge imbalance
- Ground State of v=1 Bilayer Quantum Hall Systems
- Interlayer coherent composite Fermi liquid phase in quantum Hall bilayers
- DMRG study of strongly interacting flatbands: a toy model inspired by twisted bilayer graphene
- -wave paired composite-fermion electron-hole trial state for quantum Hall bilayers with
- Intrinsic gap and exciton condensation in the nu_T=1 bilayer system
- Wave Function and Emergent SU(2) Symmetry in Quantum Hall Bilayer
- Finite-momentum condensate of magnetic excitons in a bilayer quantum Hall system
- Correlation energy, quantum phase transition, and bias potential effects in quantum Hall bilayers at nu=1
- Spontaneous interlayer exciton coherence in quantum Hall bilayers at nu=1 and nu=2: a tutorial
- Bilayer Quantum Hall Ferromagnet in a Periodic Potential
- Transition from two-component 332 Halperin state to one-component Jain state at filling factor ν=2/5
- Quantum Hall bilayer in dipole representation
- Successive electron-vortex binding in quantum Hall bilayers at
- Single-parameter variational wavefunctions for quantum Hall bilayers
- Stability of the Excitonic Phase in Bilayer Quantum Hall Systems at Total Filling One -- Effects of Finite Well Width and Pseudopotentials --
- Topological entanglement entropy in bilayer quantum Hall systems