A wide range of unconventional transport phenomena has recently been observed in single-crystal delafossite metals. Here, we present a theoretical framework to elucidate electron transport using a combination of first-principles calculations and numerical modeling of the anisotropic Boltzmann transport equation. Using PdCoO2 as a model system, we study different microscopic electron and phonon scattering mechanisms and establish the mean free path hierarchy of quasiparticles at different temperatures. We treat the anisotropic Fermi surface explicitly to numerically obtain experimentally-accessible transport observables, which bridge between the “diffusive,” “ballistic,” and “hydrodynamic” transport regime limits. We illustrate that the dist...
The highly conductive layered metallic oxide PdCoO2 is a near-perfect analog to an alkali metal in t...
Intense work studying the ballistic regime of electron transport in two-dimensional systems based on...
The single-band, quasi-two dimensional metals PdCoO2 and PtCoO2 have recently come to prominence bec...
The delafossite metal PtCoO2 is among the highest-purity materials known, with low-temperature mean ...
An explicit connection between the electronic structure and the anisotropic high conductivity of del...
In an idealized infinite crystal, the material properties are constrained by the symmetries of its u...
The electronic transport properties of the delafossite oxides $ \text{ ABO}_2 $ are usually understo...
In an electron fluid, both resistive and viscous mechanisms can be present. In systems with perfect ...
In an idealized infinite crystal, the material properties are constrained by the symmetries of the u...
Microstructures can be carefully designed to reveal the quantum phase of the wave-like nature of ele...
We present de Haas-van Alphen and resistivity data on single crystals of the delafossite PdCoO2. At ...
The project was supported by the Max-Planck Society and has received funding from the European Resea...
International audienceThe origin of the quasi two-dimensional behavior of PdCoO2 and PtCoO2 is inves...
The highly conductive layered metallic oxide PdCoO2 is a near-perfect analog to an alkali metal in t...
Intense work studying the ballistic regime of electron transport in two-dimensional systems based on...
The single-band, quasi-two dimensional metals PdCoO2 and PtCoO2 have recently come to prominence bec...
The delafossite metal PtCoO2 is among the highest-purity materials known, with low-temperature mean ...
An explicit connection between the electronic structure and the anisotropic high conductivity of del...
In an idealized infinite crystal, the material properties are constrained by the symmetries of its u...
The electronic transport properties of the delafossite oxides $ \text{ ABO}_2 $ are usually understo...
In an electron fluid, both resistive and viscous mechanisms can be present. In systems with perfect ...
In an idealized infinite crystal, the material properties are constrained by the symmetries of the u...
Microstructures can be carefully designed to reveal the quantum phase of the wave-like nature of ele...
We present de Haas-van Alphen and resistivity data on single crystals of the delafossite PdCoO2. At ...
The project was supported by the Max-Planck Society and has received funding from the European Resea...
International audienceThe origin of the quasi two-dimensional behavior of PdCoO2 and PtCoO2 is inves...
The highly conductive layered metallic oxide PdCoO2 is a near-perfect analog to an alkali metal in t...
Intense work studying the ballistic regime of electron transport in two-dimensional systems based on...
The single-band, quasi-two dimensional metals PdCoO2 and PtCoO2 have recently come to prominence bec...