The Hofstadter energy spectrum of twisted bilayer graphene is found to have recursive higher-order topological properties. We demonstrate that higher-order topological insulator (HOTI) phases, characterized by localized corner states, occur as replicas of the original HOTIs to fulfill the self-similarity of the Hofstadter spectrum. We show the existence of the exact flux translational symmetry of twisted bilayer graphene at all commensurate angles. Based on this result, we carefully identify that the original HOTI phase at zero flux is re-entrant at a half-flux periodicity, where the effective twofold rotation is preserved. In addition, numerous replicas of the original HOTIs are found for fluxes without protecting symmetries. Similar to th...
Motivated by recent experimental breakthroughs in realizing hyperbolic lattices in superconducting w...
Graphene’s quantum Hall features are associated with a π Berry’s phase due to its odd topological ps...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
The Hofstadter energy spectrum of twisted bilayer graphene (TBG) is found to have recursive higher-o...
Mirror symmetric twisted trilayer graphene (tTLG) is composed of even parity twisted bilayer graphen...
We calculate the electronic spectrum of bilayer graphene in perpendicular magnetic fields non-pertur...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
The magnetic field generated Hofstadter butterfly in twisted trilayer graphene (TTLG) is investigate...
We present transport measurements of bilayer graphene with 1.38{\deg} interlayer twist and apparent ...
Self-similarity and fractals have fascinated researchers across various disciplines. In graphene pla...
Adding magnetic flux to a band structure breaks Bloch's theorem by realizing a projective representa...
This is a short review of the recent progresses on Hofstadter butterfly in graphene, organized in th...
We study the Hofstadter butterfly and Landau levels of the twisted bilayer graphene (TBG). We show t...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
Recent advances in realizing artificial gauge fields on optical lattices promise experimental detect...
Motivated by recent experimental breakthroughs in realizing hyperbolic lattices in superconducting w...
Graphene’s quantum Hall features are associated with a π Berry’s phase due to its odd topological ps...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...
The Hofstadter energy spectrum of twisted bilayer graphene (TBG) is found to have recursive higher-o...
Mirror symmetric twisted trilayer graphene (tTLG) is composed of even parity twisted bilayer graphen...
We calculate the electronic spectrum of bilayer graphene in perpendicular magnetic fields non-pertur...
Graphene superlattices were shown to exhibit high-temperature quantum oscillations due to periodic e...
The magnetic field generated Hofstadter butterfly in twisted trilayer graphene (TTLG) is investigate...
We present transport measurements of bilayer graphene with 1.38{\deg} interlayer twist and apparent ...
Self-similarity and fractals have fascinated researchers across various disciplines. In graphene pla...
Adding magnetic flux to a band structure breaks Bloch's theorem by realizing a projective representa...
This is a short review of the recent progresses on Hofstadter butterfly in graphene, organized in th...
We study the Hofstadter butterfly and Landau levels of the twisted bilayer graphene (TBG). We show t...
The presence of periodic modulation in graphene leads to a reconstruction of the band structure and ...
Recent advances in realizing artificial gauge fields on optical lattices promise experimental detect...
Motivated by recent experimental breakthroughs in realizing hyperbolic lattices in superconducting w...
Graphene’s quantum Hall features are associated with a π Berry’s phase due to its odd topological ps...
It has been shown that Bernal stacked bilayer graphene (BLG) in a uniform magnetic field demonstrate...