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Electronic Structure and Magnetism of the Multiband New Superconductor CaRbFe4As4

Author:
Shi, Xianbiao  Wang, Guangtao  


Journal:
JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN


Issue Date:
2016


Abstract(summary):

By first-principles calculations, we investigated the electronic structure, magnetism, and Fermi surface (FS) nesting of the newly discovered superconductor CaRbFe4As4. In the nonmagnetic (NM) state, there are ten bands crossing the Fermi level, which is more complicated than other FeAs-based superconductors, showing a multiband character. The FS consists of six holelike sheets around the Gamma-point and four electronlike sheets near the Brillouin zone corner M-point. The holelike FSs will overlap with the electronlike FS sheets, if they are shifted by the vector q =3D (pi, pi, 0). Such FS nesting induces the bare susceptibility peak chi(0)(q) at the M-point. Fixed spin moment calculations indicate that CaRbFe4As4 has a strong tendency towards magnetism. Total energy calculations predicted that the ground state of CaRbFe4As4 is the stripe antiferromagnetic state. Therefore, CaRbFe4As4 is strongly similar to other FeAs-based superconductors, although it crystallized with a unique crystal structure.


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