TY - JOUR
T1 - Ab initio derivation of electronic low-energy models for C 60 and aromatic compounds
AU - Nomura, Yusuke
AU - Nakamura, Kazuma
AU - Arita, Ryotaro
PY - 2012/4/25
Y1 - 2012/4/25
N2 - We present a systematic study for understanding the relation between electronic correlation and superconductivity in C 60 and aromatic compounds. We derived, from first principles, extended Hubbard models for twelve compounds: fcc K 3C 60, Rb 3C 60, Cs 3C 60 (with three different lattice constants), A15 Cs 3C 60 (with four different lattice constants), doped solid picene, coronene, and phenanthrene. We show that these compounds are strongly correlated and have similar energy scales of their bandwidths and interaction parameters. However, they have a different trend in the relation between the strength of the electronic correlation and superconducting- transition temperature. While the C 60 compounds have a positive correlation, the aromatic compounds exhibit a negative correlation.
AB - We present a systematic study for understanding the relation between electronic correlation and superconductivity in C 60 and aromatic compounds. We derived, from first principles, extended Hubbard models for twelve compounds: fcc K 3C 60, Rb 3C 60, Cs 3C 60 (with three different lattice constants), A15 Cs 3C 60 (with four different lattice constants), doped solid picene, coronene, and phenanthrene. We show that these compounds are strongly correlated and have similar energy scales of their bandwidths and interaction parameters. However, they have a different trend in the relation between the strength of the electronic correlation and superconducting- transition temperature. While the C 60 compounds have a positive correlation, the aromatic compounds exhibit a negative correlation.
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U2 - 10.1103/PhysRevB.85.155452
DO - 10.1103/PhysRevB.85.155452
M3 - Article
AN - SCOPUS:84860442652
SN - 1098-0121
VL - 85
JO - Physical Review B - Condensed Matter and Materials Physics
JF - Physical Review B - Condensed Matter and Materials Physics
IS - 15
M1 - 155452
ER -