We derive a simple formula for the real-space chirality of twisted bilayer graphene that can be related to the cross product of its sheet currents. This quantity shows well-defined plateaus for the first remote band as a function of the gate voltage which are approximately quantized for commensurate twist angles. The zeroth plateau corresponds to the first magic angle where a sign change occurs due to an emergent C-6 symmetry. Our observation offers a new definition of the magic angle based on a macroscopic observable which is accessible in typical transport experiments
We show that the electronic structure of the low-energy bands in the small angle-twisted bilayer gra...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...
12 pages, 10 figuresInternational audienceWe study tunneling of charge carriers in single- and bilay...
5 pags., 4 figs.We derive a simple formula for the real-space chirality of twisted bilayer graphene ...
Twisted bilayer graphene (TBG) has been experimentally observed to exhibit almost flat bands when th...
Taking into account the sp - hybridization effect for valence electrons in carbon atoms, a very simp...
Magic angles in the chiral model of twisted bilayer graphene are parameters for which the chiral ver...
The interlayer van der Waals interaction in twisted bilayer graphene (tBLG) induces both in-plane an...
We investigate magnetic instabilities in charge-neutral twisted bilayer graphene close to so-called ...
We propose a minimal transport experiment in the linear regime that can probe the chirality of twist...
The observation of correlated insulating states and unconventional superconductivity on magic-angle ...
The paper discusses the chiral tunnelling of charge carriers through double barrier structure in twi...
When two monolayers of graphene are stacked with a small relative twist angle, the resulting band st...
In AA-stacked twisted bilayer graphene, the lower energy bands become completely flat when the twist...
We investigate the effect of a magnetic field on the band structure of a bilayer graphene with a mag...
We show that the electronic structure of the low-energy bands in the small angle-twisted bilayer gra...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...
12 pages, 10 figuresInternational audienceWe study tunneling of charge carriers in single- and bilay...
5 pags., 4 figs.We derive a simple formula for the real-space chirality of twisted bilayer graphene ...
Twisted bilayer graphene (TBG) has been experimentally observed to exhibit almost flat bands when th...
Taking into account the sp - hybridization effect for valence electrons in carbon atoms, a very simp...
Magic angles in the chiral model of twisted bilayer graphene are parameters for which the chiral ver...
The interlayer van der Waals interaction in twisted bilayer graphene (tBLG) induces both in-plane an...
We investigate magnetic instabilities in charge-neutral twisted bilayer graphene close to so-called ...
We propose a minimal transport experiment in the linear regime that can probe the chirality of twist...
The observation of correlated insulating states and unconventional superconductivity on magic-angle ...
The paper discusses the chiral tunnelling of charge carriers through double barrier structure in twi...
When two monolayers of graphene are stacked with a small relative twist angle, the resulting band st...
In AA-stacked twisted bilayer graphene, the lower energy bands become completely flat when the twist...
We investigate the effect of a magnetic field on the band structure of a bilayer graphene with a mag...
We show that the electronic structure of the low-energy bands in the small angle-twisted bilayer gra...
We present an effective (minimal) theory for chiral two-dimensional materials. These materials posse...
12 pages, 10 figuresInternational audienceWe study tunneling of charge carriers in single- and bilay...