Evidence for Insulating Behavior in the Electric Conduction of (NH)KC Systems
arXiv:cond-mat/0201525 · doi:10.1103/PhysRevLett.88.096401
Abstract
Microwave study using cavity perturbation technique revealed that the conductivity of antiferromagnet (NH)KRbC at 200K is already 3-4 orders of magnitude smaller than those of superconductors, KC and (NH)NaRbC, and that the antiferromagnetic compounds are {\it insulators} below 250K without metal-insulator transitions. The striking difference in the magnitude of the conductivity between these materials strongly suggests that the Mott-Hubbard transition in the ammoniated alkali fullerides is driven by a reduction of lattice symmetry from face-centered-cubic to face-centered-orthorhombic, rather than by the magnetic ordering.
accepted for publication in PRL
References in corpus (1)
Cited by in corpus (14)
- Modeling the Unconventional Superconducting Properties of Expanded AC Fullerides
- Cooling quasiparticles in AC fullerides by excitonic mid-infrared absorption
- Absence of photoemission from the Fermi level in potassium intercalated picene and coronene films: structure, polaron or correlation physics?
- Broadband method for precise microwave spectroscopy of superconducting thin films near the critical temperature
- Sensitivity of the Mott Transition to Non-cubic Splitting of the Orbital Degeneracy: Application to NH3 K3C60
- Electronic and magnetic properties of black phosphorus
- Metal-to-insulator evolution in (NH3)xNaK2C60: an NMR study
- Heating causes non-linear microwave absorption anomaly in single wall carbon nanotubes
- Transport, Magnetic and Vibrational Properties of Chemically Exfoliated Few Layer Graphene
- Electronic properties of air-sensitive nanomaterials probed with microwave impedance measurements
- Complex microwave conductivity of Na-DNA powders
- Tuning Conductivity and Spin Dynamics in Few-Layer Graphene via In Situ Potassium Exposure
- MuSR and SQUID Investigation of Superconductivity in (NH_3)_0.75NaK_2C_60
- Microwave Hall measurements using a circularly polarized dielectric cavity