We propose that bilayer graphene can provide an experimental realization of deconfined criticality. Current experiments indicate the presence of Néel order in the presence of a moderate magnetic field. The Néel order can be destabilized by application of a transverse electric field. The resulting electric field induced state is likely to have valence bond solid order, and the transition can acquire the emergent fractionalized and gauge excitations of deconfined criticality.Physic
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2012.Cataloged from PDF ve...
The coexistence of superconducting and correlated insulating states in magic-angle twisted bilayer g...
The high magnetic field electronic structure of bilayer graphene is enhanced by the spin, valley iso...
External magnetic fields conventionally suppress superconductivity, both by orbital and paramagnetic...
Emergent phenomena arising from the collective behavior of electrons is generally expected when Coul...
Symmetry-breaking in a quantum system often leads to complex emergent behavior. In bilayer graphene ...
We study a number of quantum phase transitions, which are exotic in their nature and separates non-t...
We develop a proposal to realize a widely tunable and clean quantum phase transition in bilayer grap...
We report the observation of spin-polarized superconductivity in Bernal bilayer graphene when doped ...
We analyze the phase diagram of bilayer graphene (BLG) at zero temperature and zero doping. Assuming...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We have measured the magnetoresistance of freely suspended high-mobility bilayer graphene. For magne...
In materials systems with flat energy bands and limited disorder, interactions among electrons domin...
We present measurements of the electronic compressibility, K, of bilayer graphene in both zero and f...
The discovery of different phases as a result of correlations, especially in low-dimensional materia...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2012.Cataloged from PDF ve...
The coexistence of superconducting and correlated insulating states in magic-angle twisted bilayer g...
The high magnetic field electronic structure of bilayer graphene is enhanced by the spin, valley iso...
External magnetic fields conventionally suppress superconductivity, both by orbital and paramagnetic...
Emergent phenomena arising from the collective behavior of electrons is generally expected when Coul...
Symmetry-breaking in a quantum system often leads to complex emergent behavior. In bilayer graphene ...
We study a number of quantum phase transitions, which are exotic in their nature and separates non-t...
We develop a proposal to realize a widely tunable and clean quantum phase transition in bilayer grap...
We report the observation of spin-polarized superconductivity in Bernal bilayer graphene when doped ...
We analyze the phase diagram of bilayer graphene (BLG) at zero temperature and zero doping. Assuming...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We have measured the magnetoresistance of freely suspended high-mobility bilayer graphene. For magne...
In materials systems with flat energy bands and limited disorder, interactions among electrons domin...
We present measurements of the electronic compressibility, K, of bilayer graphene in both zero and f...
The discovery of different phases as a result of correlations, especially in low-dimensional materia...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2012.Cataloged from PDF ve...
The coexistence of superconducting and correlated insulating states in magic-angle twisted bilayer g...
The high magnetic field electronic structure of bilayer graphene is enhanced by the spin, valley iso...