In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is exponentially suppressed at zero bias, followed by a strong peak at a finite bias voltage V_(max). This behavior, which is qualitatively different from that observed for the electron Fermi sea, provides fundamental insight into the strongly correlated non-Fermi liquid nature of the CF Fermi sea and, in particular, offers a window into the short-distance high-energy physics of this state. We identify the exciton responsible for the peak current and provide a quantitative account of the value of V_(max). The excitonic attraction is shown to be quantitatively significant, and its variation accounts for the increase of V_(max) with the applicati...
Bilayer quantum Hall systems at v_T = 1 support an excitonic ground state. In addition to the usual ...
Tunneling spectroscopy reveals evidence for interlayer electron-hole correlations in quantum Hall bi...
Using Coulomb drag as a probe, we explore the excitonic phase transition in quantum Hall bilayers at...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
This thesis is a report of the transport properties of bilayer two-dimensional electron systems foun...
The bulk properties of the bilayer quantum Hall state at total filling factor one have been intensiv...
The bulk properties of the bilayer quantum Hall state at total filling factor one have been intensiv...
A wide variety of two-dimensional electron systems (2DES) allow for independent control of the total...
Interlayer tunneling measurements in the strongly correlated bilayer quantized Hall phase at ν_T = 1...
Interlayer tunneling measurements in the strongly correlated bilayer quantized Hall phase at ν_T = 1...
Bilayer quantum Hall systems at v_T = 1 support an excitonic ground state. In addition to the usual ...
Double-layer two-dimensional electron systems can exhibit a fascinating collective phase believed to...
Filling factor =1 incompressible states in ideal bilayer quantum Hall systems have spontaneous inter...
Bilayer quantum Hall systems at v_T = 1 support an excitonic ground state. In addition to the usual ...
Tunneling spectroscopy reveals evidence for interlayer electron-hole correlations in quantum Hall bi...
Using Coulomb drag as a probe, we explore the excitonic phase transition in quantum Hall bilayers at...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
In a bilayer system consisting of a composite-fermion Fermi sea in each layer, the tunnel current is...
This thesis is a report of the transport properties of bilayer two-dimensional electron systems foun...
The bulk properties of the bilayer quantum Hall state at total filling factor one have been intensiv...
The bulk properties of the bilayer quantum Hall state at total filling factor one have been intensiv...
A wide variety of two-dimensional electron systems (2DES) allow for independent control of the total...
Interlayer tunneling measurements in the strongly correlated bilayer quantized Hall phase at ν_T = 1...
Interlayer tunneling measurements in the strongly correlated bilayer quantized Hall phase at ν_T = 1...
Bilayer quantum Hall systems at v_T = 1 support an excitonic ground state. In addition to the usual ...
Double-layer two-dimensional electron systems can exhibit a fascinating collective phase believed to...
Filling factor =1 incompressible states in ideal bilayer quantum Hall systems have spontaneous inter...
Bilayer quantum Hall systems at v_T = 1 support an excitonic ground state. In addition to the usual ...
Tunneling spectroscopy reveals evidence for interlayer electron-hole correlations in quantum Hall bi...
Using Coulomb drag as a probe, we explore the excitonic phase transition in quantum Hall bilayers at...