Motivated by recent discoveries of superconductivity in lightly-doped multilayer graphene systems, we present a low-energy model to study superconductivity in 2D materials whose Fermi surface consists of two valleys at $\pm \vec{K}$-points. We assume a triplet odd-valley superconducting order with a pair potential that is isotropic in each valley but has a different sign in the two different valleys. Our theory predicts the emergence of an almost flat band of edge states centered at zero energy for certain edge orientations. As a result, a prominent experimental signature of this type of superconductivity is the presence of a large zero-energy peak in the local density of states near specific edges. The results of the effective low-energy...
Inspired by recent experimental discoveries of superconductivity in chirally-stacked and twisted mul...
Bilayer graphene has two non-equivalent sublattices and, therefore, the same adatom impurity can man...
We study the emergence of electronic edge states in superconducting (SC) monolayer, bilayer, and tri...
Crystalline graphene heterostructures, namely Bernal bilayer and rhombohedral trilayer graphene, sub...
We explore unconventional superconductivity of repulsive spinless fermions on square and honeycomb l...
Superconductivity was recently discovered in rhombohedral trilayer graphene (RTG) in the absence of ...
Electron pairing in the vast majority of superconductors follows the Bardeen–Cooper–Schrieffer theor...
We consider a two-dimensional disordered conductor in the regime when the superconducting phase is d...
It was recently suggested that the topology of magic-angle twisted bilayer graphene's (MATBG) flat b...
Two-dimensional (2D) Fermi gases subject to s-wave pairing, spin-orbit coupling and large-enough Zee...
We explore unconventional superconductivity of repulsive spinless fermions on square and honeycomb l...
The discovery of a very rich phase diagram in twisted bilayer graphene [1,2] renewed the interest in...
The intense interest in triplet superconductivity partly stems from theoretical predictions of exoti...
ABC-stacked multilayer graphene (ABC-MLG) exhibits topological surface flat bands with a divergent d...
We study theoretically a moir\'e superlattice geometry consisting of mirror-symmetric twisted trilay...
Inspired by recent experimental discoveries of superconductivity in chirally-stacked and twisted mul...
Bilayer graphene has two non-equivalent sublattices and, therefore, the same adatom impurity can man...
We study the emergence of electronic edge states in superconducting (SC) monolayer, bilayer, and tri...
Crystalline graphene heterostructures, namely Bernal bilayer and rhombohedral trilayer graphene, sub...
We explore unconventional superconductivity of repulsive spinless fermions on square and honeycomb l...
Superconductivity was recently discovered in rhombohedral trilayer graphene (RTG) in the absence of ...
Electron pairing in the vast majority of superconductors follows the Bardeen–Cooper–Schrieffer theor...
We consider a two-dimensional disordered conductor in the regime when the superconducting phase is d...
It was recently suggested that the topology of magic-angle twisted bilayer graphene's (MATBG) flat b...
Two-dimensional (2D) Fermi gases subject to s-wave pairing, spin-orbit coupling and large-enough Zee...
We explore unconventional superconductivity of repulsive spinless fermions on square and honeycomb l...
The discovery of a very rich phase diagram in twisted bilayer graphene [1,2] renewed the interest in...
The intense interest in triplet superconductivity partly stems from theoretical predictions of exoti...
ABC-stacked multilayer graphene (ABC-MLG) exhibits topological surface flat bands with a divergent d...
We study theoretically a moir\'e superlattice geometry consisting of mirror-symmetric twisted trilay...
Inspired by recent experimental discoveries of superconductivity in chirally-stacked and twisted mul...
Bilayer graphene has two non-equivalent sublattices and, therefore, the same adatom impurity can man...
We study the emergence of electronic edge states in superconducting (SC) monolayer, bilayer, and tri...