Motivated by recent experimental and computational investigations of bilayer, hydrogenated and fluorinated graphene, we apply the formalisms of U(1) quantum electrodynamics and SU(2) quantum chromodynamics theories of strongly correlated state. Unlike non-bipartite triangular lattice, on bipartite honeycomb lattice there always exists a monopole that transforms trivially under all the microscopic symmetries, destabilizing the Dirac spin liquid (DSL), so that one can continuously tune the DSL state to the state with parent SU(2) instead of U(1) gauge group. The SU(2) theory describes a spin-liquid state, which is different from usual DSL and is probably unstable with respect to Néel or valence-bond solid (VBS) phases, except for the quantum ...
We propose that bilayer graphene can provide an experimental realization of deconfined criticality. ...
We present a symmetry-based analysis of competition between different gapped states that have been p...
Bilayer graphene exhibits a rich phase diagram in the quantum Hall regime, arising from a multitude ...
We study a number of quantum phase transitions, which are exotic in their nature and separates non-t...
This dissertation presents a study of various phenomena in quantum condensed matter physics by focus...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2012.Cataloged from PDF ve...
The primary subject of this thesis is graphene and how the rudimentary attributes of its charge carr...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
We consider the interplay between the antiferromagnetic and Kekul´e valence bond solid orderings in ...
Quantum magnets provide the simplest example of strongly interacting quantum matter, yet they contin...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
The nematic phase transition in electronic liquids, driven by Coulomb interactions, represents a new...
Graphene, a monolayer of graphite, has been isolated in 2004 by Novoselov et al. [1]. Since then, it...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We propose that bilayer graphene can provide an experimental realization of deconfined criticality. ...
We present a symmetry-based analysis of competition between different gapped states that have been p...
Bilayer graphene exhibits a rich phase diagram in the quantum Hall regime, arising from a multitude ...
We study a number of quantum phase transitions, which are exotic in their nature and separates non-t...
This dissertation presents a study of various phenomena in quantum condensed matter physics by focus...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2012.Cataloged from PDF ve...
The primary subject of this thesis is graphene and how the rudimentary attributes of its charge carr...
textIn this thesis we investigate the electronic band structures and the correlations in chirally (...
We consider the interplay between the antiferromagnetic and Kekul´e valence bond solid orderings in ...
Quantum magnets provide the simplest example of strongly interacting quantum matter, yet they contin...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
The physics of quantum materials is at the heart of current condensed matter research. The interacti...
The nematic phase transition in electronic liquids, driven by Coulomb interactions, represents a new...
Graphene, a monolayer of graphite, has been isolated in 2004 by Novoselov et al. [1]. Since then, it...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Twisted bilayer graphene ...
We propose that bilayer graphene can provide an experimental realization of deconfined criticality. ...
We present a symmetry-based analysis of competition between different gapped states that have been p...
Bilayer graphene exhibits a rich phase diagram in the quantum Hall regime, arising from a multitude ...