Research paperTheoreticalLayer skyrmions for ideal Chern bands and twisted bilayer grapheneDaniele Guerci, Jie Wang, Christophe MoraarXiv·2024·10.1140/epjb/e2011-20857-6·arXiv:2408.12652AbstractIdeal C = 1 Chern bands exhibit a Landau level correspondence: they factorize as a lowest Landau levels and a spinor wavefunction that spans the layer index. We demonstrate that, in single Dirac moiré models, the spinor develops generally a Skyrme texture in real space with an associated Berry phase which compensates exactly the magnetic phase of the Landau level. For ideal bands with higher Chern numbers C > 1, we find that C color Landau levels are carried by C spinors with Skyrme textures. We identify a SU(C) gauge symmetry in the color space of spinors and an emergent non-Abelian connection in real space intimately linked to the Pontryagin winding index of the layer skyrmions. They result in a total real-space Chern number of −1, screening the magnetic phase, irrespective of C and of the number of layers. The topologically robust Skyrme texture remains remarkably intact in twisted bilayer graphene, even far from the chiral limit, and for realistic values of corrugation, making it an experimentally testable feature. We verify our predictions at the first magic angle of twisted bilayer, trilayer, and monolayer-bilayer graphene.Read more
Chiral-limit twisted bilayer graphene at the first magic angle, treated as an ideal C = 1 Chern band with layer skyrmion texture.1 propertySimulatedCStudied MaterialExpand
Realistic twisted bilayer graphene away from the chiral limit with corrugation ratio wAA/wAB = 0.7.1 propertySimulatedCStudied MaterialExpand
Chiral helical twisted trilayer graphene with a C = 1 ideal flat band and three layers.1 propertySimulatedCStudied MaterialExpand
Monolayer-bilayer graphene at the first magic angle, used as a higher-layer graphene-based ideal Chern band example.1 propertySimulatedCStudied MaterialExpand
Research paperTheoreticalLayer skyrmions for ideal Chern bands and twisted bilayer grapheneDaniele Guerci, Jie Wang, Christophe MoraarXiv·2024·10.1140/epjb/e2011-20857-6·arXiv:2408.12652AbstractIdeal C = 1 Chern bands exhibit a Landau level correspondence: they factorize as a lowest Landau levels and a spinor wavefunction that spans the layer index. We demonstrate that, in single Dirac moiré models, the spinor develops generally a Skyrme texture in real space with an associated Berry phase which compensates exactly the magnetic phase of the Landau level. For ideal bands with higher Chern numbers C > 1, we find that C color Landau levels are carried by C spinors with Skyrme textures. We identify a SU(C) gauge symmetry in the color space of spinors and an emergent non-Abelian connection in real space intimately linked to the Pontryagin winding index of the layer skyrmions. They result in a total real-space Chern number of −1, screening the magnetic phase, irrespective of C and of the number of layers. The topologically robust Skyrme texture remains remarkably intact in twisted bilayer graphene, even far from the chiral limit, and for realistic values of corrugation, making it an experimentally testable feature. We verify our predictions at the first magic angle of twisted bilayer, trilayer, and monolayer-bilayer graphene.Read more
Chiral-limit twisted bilayer graphene at the first magic angle, treated as an ideal C = 1 Chern band with layer skyrmion texture.1 propertySimulatedCStudied MaterialExpand
Realistic twisted bilayer graphene away from the chiral limit with corrugation ratio wAA/wAB = 0.7.1 propertySimulatedCStudied MaterialExpand
Chiral helical twisted trilayer graphene with a C = 1 ideal flat band and three layers.1 propertySimulatedCStudied MaterialExpand
Monolayer-bilayer graphene at the first magic angle, used as a higher-layer graphene-based ideal Chern band example.1 propertySimulatedCStudied MaterialExpand
Research paperTheoreticalLayer skyrmions for ideal Chern bands and twisted bilayer grapheneDaniele Guerci, Jie Wang, Christophe MoraarXiv·2024·10.1140/epjb/e2011-20857-6·arXiv:2408.12652AbstractIdeal C = 1 Chern bands exhibit a Landau level correspondence: they factorize as a lowest Landau levels and a spinor wavefunction that spans the layer index. We demonstrate that, in single Dirac moiré models, the spinor develops generally a Skyrme texture in real space with an associated Berry phase which compensates exactly the magnetic phase of the Landau level. For ideal bands with higher Chern numbers C > 1, we find that C color Landau levels are carried by C spinors with Skyrme textures. We identify a SU(C) gauge symmetry in the color space of spinors and an emergent non-Abelian connection in real space intimately linked to the Pontryagin winding index of the layer skyrmions. They result in a total real-space Chern number of −1, screening the magnetic phase, irrespective of C and of the number of layers. The topologically robust Skyrme texture remains remarkably intact in twisted bilayer graphene, even far from the chiral limit, and for realistic values of corrugation, making it an experimentally testable feature. We verify our predictions at the first magic angle of twisted bilayer, trilayer, and monolayer-bilayer graphene.Read more
Chiral-limit twisted bilayer graphene at the first magic angle, treated as an ideal C = 1 Chern band with layer skyrmion texture.1 propertySimulatedCStudied MaterialExpand
Realistic twisted bilayer graphene away from the chiral limit with corrugation ratio wAA/wAB = 0.7.1 propertySimulatedCStudied MaterialExpand
Chiral helical twisted trilayer graphene with a C = 1 ideal flat band and three layers.1 propertySimulatedCStudied MaterialExpand
Monolayer-bilayer graphene at the first magic angle, used as a higher-layer graphene-based ideal Chern band example.1 propertySimulatedCStudied MaterialExpand
Research paperTheoreticalLayer skyrmions for ideal Chern bands and twisted bilayer grapheneDaniele Guerci, Jie Wang, Christophe MoraarXiv·2024·10.1140/epjb/e2011-20857-6·arXiv:2408.12652AbstractIdeal C = 1 Chern bands exhibit a Landau level correspondence: they factorize as a lowest Landau levels and a spinor wavefunction that spans the layer index. We demonstrate that, in single Dirac moiré models, the spinor develops generally a Skyrme texture in real space with an associated Berry phase which compensates exactly the magnetic phase of the Landau level. For ideal bands with higher Chern numbers C > 1, we find that C color Landau levels are carried by C spinors with Skyrme textures. We identify a SU(C) gauge symmetry in the color space of spinors and an emergent non-Abelian connection in real space intimately linked to the Pontryagin winding index of the layer skyrmions. They result in a total real-space Chern number of −1, screening the magnetic phase, irrespective of C and of the number of layers. The topologically robust Skyrme texture remains remarkably intact in twisted bilayer graphene, even far from the chiral limit, and for realistic values of corrugation, making it an experimentally testable feature. We verify our predictions at the first magic angle of twisted bilayer, trilayer, and monolayer-bilayer graphene.Read more
Chiral-limit twisted bilayer graphene at the first magic angle, treated as an ideal C = 1 Chern band with layer skyrmion texture.1 propertySimulatedCStudied MaterialExpand
Realistic twisted bilayer graphene away from the chiral limit with corrugation ratio wAA/wAB = 0.7.1 propertySimulatedCStudied MaterialExpand
Chiral helical twisted trilayer graphene with a C = 1 ideal flat band and three layers.1 propertySimulatedCStudied MaterialExpand
Monolayer-bilayer graphene at the first magic angle, used as a higher-layer graphene-based ideal Chern band example.1 propertySimulatedCStudied MaterialExpand