Mottness in a doped organic superconductor
arXiv:1409.4965 · doi:10.1103/PhysRevLett.114.067002
Abstract
We report the pressure study of a doped organic superconductor with Hall coefficient and conductivity measurements. We find that maximally enhanced superconductivity and a non-Fermi liquid appear around a certain pressure where mobile carriers increase critically, suggesting a possible quantum phase transition between strongly and weakly correlated regimes. Our description extends the conventional picture of a Mott metal-insulator transition at half filling to the case of a doped Mott insulator with tunable correlation.
12 pages
References in corpus (7)
- An Intrinsic Bond-Centered Electronic Glass with Unidirectional Domains in Underdoped Cuprates
- Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductors
- Unconventional critical behaviour in a quasi-two-dimensional organic conductor
- Finite doping signatures of the Mott transition in the two-dimensional Hubbard model
- Crossover between BCS Superconductor and Doped Mott Insulator of d-wave Pairing State in Two-Dimensional Hubbard Model
- Composite-Fermion Theory for Pseudogap, Fermi Arc, Hole Pocket, and Non-Fermi-Liquid of Underdoped Cuprate Superconductors
- Electronic Griffiths phase of the d=2 Mott transition
Cited by in corpus (35)
- Spin current generation in organic antiferromagnets
- Quantum phases driven by strong correlations
- Frustration and quantum criticality
- Anomalous Hall effect in -type organic antiferromagnets
- Quantum-critical phase out of frustrated magnetism in a strongly correlated metal
- Singular charge fluctuations at a magnetic quantum critical point
- Strange metals as ersatz Fermi liquids
- Superconductivity in an extreme strange metal
- Electron-hole doping asymmetry of Fermi surface reconstructed in a simple Mott insulator
- Gifts from anomalies: Exact results for Landau phase transitions in metals
- Evolution of the Kondo lattice and non-Fermi liquid excitations in a heavy-fermion metal
- Sequential localization of a complex electron fluid
- Superconductivity in the doped quantum spin liquid on the triangular lattice
- Spin-charge-entangled non-Fermi liquid in a candidate material for a doped spin liquid
- Mott-driven BEC-BCS crossover in a doped spin liquid candidate, kappa-(BEDT-TTF)4Hg2.89Br8
- Mechanism of superconductivity and electron-hole doping asymmetry in -type molecular conductors
- Extraordinary -Electron Superconductivity Emerging from a Quantum Spin Liquid
- Pseudogap, van Hove Singularity, Maximum in Entropy and Specific Heat for Hole-Doped Mott Insulators
- Coulomb enhancement of superconducting pair-pair correlations in a -filled model for -(BEDT-TTF)X
- Dimensional decoupling at continuous quantum critical Mott transitions
- Multidimensional entropy landscape of quantum criticality
- Dynamical scaling of charge and spin responses at a Kondo destruction quantum critical point
- Quantum critical metals and loss of quasiparticles
- Thermoelectric signature of quantum critical phase in a doped spin liquid candidate
- Mott transition and magnetism on the anisotropic triangular lattice
- Superconductivity in doped triangular Mott insulators: the roles of parent spin backgrounds and charge kinetic energy
- Non-Fermi-liquid behavior and doping asymmetry in an organic Mott insulator interface
- Simultaneous Control of Bandfilling and Bandwidth in Electric Double-Layer Transistor Based on Organic Mott Insulator -(BEDT-TTF)Cu[N(CN)]Cl
- Is the optical conductivity of heavy fermion strange metals Planckian?
- Spin-singlet and spin-triplet pairing correlations in antiferromagnetically coupled Kondo systems
- Correlated Zak insulator in organic antiferromagnets
- Two -linear scattering rate regimes in the triangular lattice Hubbard model
- Abnormal planar Hall effect and disentanglement of incoherent and coherent transport in a Kondo lattice
- Possibility of BCS-BEC crossover in -type organic superconductors
- Photoinduced Frustration Modulation in -type Quantum Spin Liquid Candidates