Twisted bilayer graphene offers a unique bilayer two-dimensional-electron system where the layer separation is only in sub-nanometer scale. Unlike Bernal-stacked bilayer, the layer degree of freedom is disentangled from spin and valley, providing eight-fold degeneracy in the low energy states. We have investigated broken-symmetry quantum Hall (QH) states and their transitions due to the interplay of the relative strength of valley, spin and layer polarizations in twisted bilayer graphene. The energy gaps of the broken-symmetry QH states show an electron-hole asymmetric behaviour, and their dependence on the induced displacement field are opposite between even and odd filling factor states. These results strongly suggest that the QH states w...
Graphene has generated great interest in the scientific community since its discovery because of the...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Electron-electron interactions play an important role in graphene and related systems and can induce...
Twisted bilayer graphene offers a unique bilayer two-dimensional-electron system where the layer sep...
DoctorThe graphene which is one-monolayer of graphite has novel electronic properties such as linear...
The single-particle energy spectra of graphene and its bilayer counterpart exhibit multiple degenera...
We introduce a novel two-dimensional electronic system with ultrastrong interlayer interactions, nam...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
graphene on hexagonal boron nitride ( 9), these three groups have teased out these previously hidden...
Bilayer graphene (BLG) offers a rich platform for broken-symmetry states stabilized by interactions....
Symmetry-breaking in a quantum system often leads to complex emergent behavior. In bilayer graphene ...
The Hall resistance of a homogeneous electron system is well known to be antisymmetric with respect ...
We present a symmetry-based analysis of competition between different gapped states that have been p...
The charge carriers in bilayer graphene have both spin and valley degeneracy. Because of its unique ...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Graphene has generated great interest in the scientific community since its discovery because of the...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Electron-electron interactions play an important role in graphene and related systems and can induce...
Twisted bilayer graphene offers a unique bilayer two-dimensional-electron system where the layer sep...
DoctorThe graphene which is one-monolayer of graphite has novel electronic properties such as linear...
The single-particle energy spectra of graphene and its bilayer counterpart exhibit multiple degenera...
We introduce a novel two-dimensional electronic system with ultrastrong interlayer interactions, nam...
Motivated by a recent experiment (Sanchez-Yamagishi et al 2016 Nat. Nanotechnol. 214) reporting evid...
graphene on hexagonal boron nitride ( 9), these three groups have teased out these previously hidden...
Bilayer graphene (BLG) offers a rich platform for broken-symmetry states stabilized by interactions....
Symmetry-breaking in a quantum system often leads to complex emergent behavior. In bilayer graphene ...
The Hall resistance of a homogeneous electron system is well known to be antisymmetric with respect ...
We present a symmetry-based analysis of competition between different gapped states that have been p...
The charge carriers in bilayer graphene have both spin and valley degeneracy. Because of its unique ...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Graphene has generated great interest in the scientific community since its discovery because of the...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Electron-electron interactions play an important role in graphene and related systems and can induce...