At small layer separations, the ground state of a ν = 1 bilayer quantum Hall system exhibits spontaneous interlayer phase coherence. The evolution of this state with increasing layer separation d has been a matter of controversy. We report on small system exact diagonalization calculations which suggest that a single-phase transition, likely of first order, separates incompressible states with strong interlayer correlations from compressible states with weak interlayer correlations. We find a dependence of the phase boundary on d and interlayer tunneling amplitude that is in very good agreement with recent experiments
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
The area and perimeter dependence of the Josephson-like interlayer tunneling signature of the cohere...
At small layer separations, the ground state of a ν = 1 bilayer quantum Hall system exhibits spontan...
Measurements revealing anomalously large frictional drag at the transition between the weakly and st...
Measurements revealing anomalously large frictional drag at the transition between the weakly and st...
In Quantum Hall bilayers, at total filling factor one, a transition from a compressible phase with w...
Tunneling spectroscopy reveals evidence for interlayer electron-hole correlations in quantum Hall bi...
In Quantum Hall bilayers, at total filling factor one, a transition from a compressible phase with w...
We consider a number of strongly correlated quantum Hall states that are likely to be realized in bi...
We use high-mobility bilayer hole systems with negligible tunneling to examine how the bilayer ν=1 q...
We use high-mobility bilayer hole systems with negligible tunneling to examine how the bilayer ν=1 q...
Tunneling and Coulomb drag are sensitive probes of spontaneous interlayer phase coherence in bilayer...
We describe a phase transition of the bilayer quantum Hall ferromagnet at \(\nu=1\). In the presence...
We study interlayer pairing of composite fermions in the total $\nu=1/2+1/2$ quantum Hall bilayer as...
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
The area and perimeter dependence of the Josephson-like interlayer tunneling signature of the cohere...
At small layer separations, the ground state of a ν = 1 bilayer quantum Hall system exhibits spontan...
Measurements revealing anomalously large frictional drag at the transition between the weakly and st...
Measurements revealing anomalously large frictional drag at the transition between the weakly and st...
In Quantum Hall bilayers, at total filling factor one, a transition from a compressible phase with w...
Tunneling spectroscopy reveals evidence for interlayer electron-hole correlations in quantum Hall bi...
In Quantum Hall bilayers, at total filling factor one, a transition from a compressible phase with w...
We consider a number of strongly correlated quantum Hall states that are likely to be realized in bi...
We use high-mobility bilayer hole systems with negligible tunneling to examine how the bilayer ν=1 q...
We use high-mobility bilayer hole systems with negligible tunneling to examine how the bilayer ν=1 q...
Tunneling and Coulomb drag are sensitive probes of spontaneous interlayer phase coherence in bilayer...
We describe a phase transition of the bilayer quantum Hall ferromagnet at \(\nu=1\). In the presence...
We study interlayer pairing of composite fermions in the total $\nu=1/2+1/2$ quantum Hall bilayer as...
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
Frictional drag measurements revealing anomalously large dissipation at the transition between the w...
The area and perimeter dependence of the Josephson-like interlayer tunneling signature of the cohere...