Tuning the electronic states and superconductivity in alkali fulleride films
arXiv:2202.05968 · doi:10.1007/s43673-021-00031-2
Abstract
The successful preparation of superconducting alkali fulleride (AC, A = K, Rb, Cs) films using state-of-the-art molecular beam epitaxy overcomes the disadvantages of the air-sensitivity and phase separation in bulk AC, enabling for the first time a direct investigation of the superconductivity in alkali fullerides on the molecular scale. In this paper, we briefly review recent cryogenic scanning tunneling microscopy results of the structural, electronic, and superconducting properties of the fcc AC films grown on graphitized SiC substrates. Robust -wave superconductivity is revealed against the pseudogap, electronic correlation, non-magnetic impurities, and merohedral disorder. By controlling the alkali metal species, film thickness, and electron doping, we systematically tune the C orientational orderings and superconductivity in AC films and then complete a unified phase diagram of superconducting gap size vs electronic correlation and doping. These investigations are conclusive and elucidated that the -wave superconductivity retains in alkali fullerides despite of the electronic correlation and presence of pseudogap.
20 pages, 19 figures
References in corpus (8)
- Scanning tunneling spectroscopy of high-temperature superconductors
- Modeling the Unconventional Superconducting Properties of Expanded AC Fullerides
- Nodeless pairing in superconducting copper-oxide monolayer films on Bi2Sr2CaCu2O8+δ
- Tuning fulleride electronic structure and molecular ordering via variable layer index
- NMR study of the Mott transitions to superconductivity in the two Cs_3C_60 phases
- Novel Orientational Ordering and Reentrant Metallicity in KxC60 Monolayers for 3 <= x <= 5
- Recovering Metallicity in A4C60: The Case of Monomeric Li4C60
- Visualizing molecular orientational ordering and electronic structure in CsnC60 fulleride films