Two-gap superconductivity in heavily n-doped graphene: Ab initio Migdal-Eliashberg theory
Graphene is the only member of the carbon family from zero- to three-dimensional materials for which superconductivity has not been observed yet. At this time, it is not clear whether the quest for superconducting graphene is hindered by technical challenges, or else by the fluctuation of the order...
Main Authors: | Margine, E, Giustino, F |
---|---|
פורמט: | Journal article |
שפה: | English |
יצא לאור: |
American Physical Society
2014
|
פריטים דומים
-
Anisotropic Migdal-Eliashberg theory using Wannier functions
מאת: Margine, E, et al.
יצא לאור: (2013) -
Full-bandwidth anisotropic Migdal-Eliashberg theory and its application to superhydrides
מאת: Roman Lucrezi, et al.
יצא לאור: (2024-01-01) -
Superconductivity in CaH $$_{6}$$ 6 and ThH $$_{10}$$ 10 through fully ab initio Eliashberg method and self-consistent Green’s function
מאת: Alwan Abdillah Darussalam, et al.
יצא לאור: (2024-08-01) -
Ab Initio Theory of Photoemission from Graphene
מאת: Eugene Krasovskii
יצא לאור: (2021-05-01) -
Superconductivity in heavily boron-doped silicon carbide
מאת: Markus Kriener, Takahiro Muranaka, Junya Kato, Zhi-An Ren, Jun Akimitsu and Yoshiteru Maeno
יצא לאור: (2008-01-01)