The delafossite metal PtCoO2 is among the highest-purity materials known, with low-temperature mean free path up to 5 μm in the best as-grown single crystals. It exhibits a strongly faceted, nearly hexagonal Fermi surface. This property has profound consequences for nonlocal transport within this material, such as in the classic ballistic-regime measurement of bend resistance in mesoscopic squares. Here, we report the results of experiments in which high-energy electron irradiation was used to introduce pointlike disorder into such squares, reducing the mean free path and therefore the strength of the ballistic-regime transport phenomena. We demonstrate that high-energy electron irradiation is a well-controlled technique to cross from nonlo...
We study the electronic structure of delafossite PtCoO2 to elucidate its extremely small resistivity...
Microstructures can be carefully designed to reveal the quantum phase of the wave-like nature of ele...
Although they were first synthesized in chemistry laboratories nearly fifty years ago, the physical ...
The delafossite metals PdCoO2, PtCoO2, and PdCrO2 are among the highest conductivity materials known...
This thesis describes investigations into the origins and nature of the remarkable electrical trans...
International audienceThe delafossite metals PdCoO 2 , PtCoO 2 , and PdCrO 2 are among the highest c...
A wide range of unconventional transport phenomena has recently been observed in single-crystal dela...
Geometric electron optics may be implemented in solids when electron transport is ballistic on the l...
In an idealized infinite crystal, the material properties are constrained by the symmetries of its u...
In an idealized infinite crystal, the material properties are constrained by the symmetries of the u...
The project was supported by the Max-Planck Society and has received funding from the European Resea...
Understanding the role of electron correlations in strong spin-orbit transition-metal oxides is key ...
Intense work studying the ballistic regime of electron transport in two-dimensional systems based on...
We study the electronic structure of delafossite PtCoO2 to elucidate its extremely small resistivity...
Microstructures can be carefully designed to reveal the quantum phase of the wave-like nature of ele...
Although they were first synthesized in chemistry laboratories nearly fifty years ago, the physical ...
The delafossite metals PdCoO2, PtCoO2, and PdCrO2 are among the highest conductivity materials known...
This thesis describes investigations into the origins and nature of the remarkable electrical trans...
International audienceThe delafossite metals PdCoO 2 , PtCoO 2 , and PdCrO 2 are among the highest c...
A wide range of unconventional transport phenomena has recently been observed in single-crystal dela...
Geometric electron optics may be implemented in solids when electron transport is ballistic on the l...
In an idealized infinite crystal, the material properties are constrained by the symmetries of its u...
In an idealized infinite crystal, the material properties are constrained by the symmetries of the u...
The project was supported by the Max-Planck Society and has received funding from the European Resea...
Understanding the role of electron correlations in strong spin-orbit transition-metal oxides is key ...
Intense work studying the ballistic regime of electron transport in two-dimensional systems based on...
We study the electronic structure of delafossite PtCoO2 to elucidate its extremely small resistivity...
Microstructures can be carefully designed to reveal the quantum phase of the wave-like nature of ele...
Although they were first synthesized in chemistry laboratories nearly fifty years ago, the physical ...