Unconventional superconductivity in ScIrSi by spin-orbit coupling driven flat band
arXiv:2310.03609 · doi:10.1038/s43246-024-00521-4
Abstract
The kagome lattice is very attractive as it can host many novel quantum states, such as the charge density wave, superconductivity, quantum spin liquid, etc. Meanwhile, iridates often exhibit a strong spin-orbit coupling (SOC) effect due to the large atomic mass of 5 elements, which has important implications for both the energy bands and the pairing symmetry of superconductors. For the Laves phase superconductor ScIr with a kagome lattice, by doping Si to the Ir sites, we observed a nonmonotonic and two-dome like doping dependence of the superconducting transition temperature , which is typically found in many unconventional superconducting systems. Interestingly, for some samples, especially ScIrSi with the optimal , after the suppression of superconductivity, the normal-state resistivity exhibits a semiconducting behavior; meanwhile, the specific heat coefficient shows an upturn which follows the relation at low temperatures. Around the optimal doping, the resistance measurements exhibit strong superconducting fluctuations. And the superconductivity related specific heat can be fitted by the model of a -wave gap after subtracting the normal-state background. These strongly suggest unconventional superconductivity and correlation effect in the samples, which is mainly induced by a flat band near the Fermi level when considering the SOC, as supported by the first-principles calculations. Our results reveal a new unconventional superconducting system ScIrSi with strong correlation effects induced by the flat band in the kagome system with strong SOC.
References in corpus (13)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Topological kagome magnets and superconductors
- Double superconducting dome and triple enhancement of Tc in the kagome superconductor CsV3Sb5 under high pressure
- Quantum states and intertwining phases in kagome materials
- Valence Bond Solids and Their Quantum Melting in Hard-Core Bosons on the Kagome Lattice
- Charge-order-assisted topological surface states and flat bands in the kagome superconductor CsVSb
- Flat-Bands-Enabled Triplet Excitonic Insulator in a Di-atomic Kagome Lattice
- A flat band-induced correlated kagome metal
- Strong coupling nature of kagome superconductivity in LaRuSi
- Observation of Flat Band, Dirac Nodal Lines and Topological Surface States in Kagome Superconductor CsTiBi
- Strong-coupling superconductivity of SrIr2 and SrRh2: Phonon engineering of metallic Ir and Rh
- High magnetic field induced crossover from the Kondo to Fermi liquid behavior in 1-VTe single crystals
- High-pressure synthesis and superconductivity of the novel Laves phase BaIr2