Research paperTheoreticalUnusual spin-triplet superconductivity in monolayer grapheneV. Apinyan, M. Sahakyan2025·10.1140/epjb/s10051-024-00723-2·arXiv:2510.02413AbstractIn this paper we consider the phonons in monolayer graphene and we show the possibility for the spin-triplet superconducting excitations states by discretizing the single-particle excitations near Fermi wave vector. The monolayer graphene is considered under an external gate potential with local Coulomb interaction at each lattice site. The work derives an effective electron-electron interaction after phonon-field integration, examines the role of the chemical potential and Hubbard-U interaction, and shows the existence of a superconducting order parameter over a temperature domain, including a narrow region of effective electron-phonon coupling supporting superconductivity.Read more
Theoretical single-layer graphene system under external gate potential and on-site Hubbard-U interaction.No measurements recordedSimulatedCStudied MaterialExpand
Research paperTheoreticalUnusual spin-triplet superconductivity in monolayer grapheneV. Apinyan, M. Sahakyan2025·10.1140/epjb/s10051-024-00723-2·arXiv:2510.02413AbstractIn this paper we consider the phonons in monolayer graphene and we show the possibility for the spin-triplet superconducting excitations states by discretizing the single-particle excitations near Fermi wave vector. The monolayer graphene is considered under an external gate potential with local Coulomb interaction at each lattice site. The work derives an effective electron-electron interaction after phonon-field integration, examines the role of the chemical potential and Hubbard-U interaction, and shows the existence of a superconducting order parameter over a temperature domain, including a narrow region of effective electron-phonon coupling supporting superconductivity.Read more
Theoretical single-layer graphene system under external gate potential and on-site Hubbard-U interaction.No measurements recordedSimulatedCStudied MaterialExpand
Research paperTheoreticalUnusual spin-triplet superconductivity in monolayer grapheneV. Apinyan, M. Sahakyan2025·10.1140/epjb/s10051-024-00723-2·arXiv:2510.02413AbstractIn this paper we consider the phonons in monolayer graphene and we show the possibility for the spin-triplet superconducting excitations states by discretizing the single-particle excitations near Fermi wave vector. The monolayer graphene is considered under an external gate potential with local Coulomb interaction at each lattice site. The work derives an effective electron-electron interaction after phonon-field integration, examines the role of the chemical potential and Hubbard-U interaction, and shows the existence of a superconducting order parameter over a temperature domain, including a narrow region of effective electron-phonon coupling supporting superconductivity.Read more
Theoretical single-layer graphene system under external gate potential and on-site Hubbard-U interaction.No measurements recordedSimulatedCStudied MaterialExpand
Research paperTheoreticalUnusual spin-triplet superconductivity in monolayer grapheneV. Apinyan, M. Sahakyan2025·10.1140/epjb/s10051-024-00723-2·arXiv:2510.02413AbstractIn this paper we consider the phonons in monolayer graphene and we show the possibility for the spin-triplet superconducting excitations states by discretizing the single-particle excitations near Fermi wave vector. The monolayer graphene is considered under an external gate potential with local Coulomb interaction at each lattice site. The work derives an effective electron-electron interaction after phonon-field integration, examines the role of the chemical potential and Hubbard-U interaction, and shows the existence of a superconducting order parameter over a temperature domain, including a narrow region of effective electron-phonon coupling supporting superconductivity.Read more
Theoretical single-layer graphene system under external gate potential and on-site Hubbard-U interaction.No measurements recordedSimulatedCStudied MaterialExpand