Directional ballistic transport in the two-dimensional metal PdCoO2
arXiv:2103.01332 · doi:10.1038/s41567-022-01570-7
Abstract
In an idealized infinite crystal, the material properties are constrained by the symmetries of its unit cell. Naturally, the point-group symmetry is broken by the sample shape of any finite crystal, yet this is commonly unobservable in macroscopic metals. To sense the shape-induced symmetry lowering in such metals, long-lived bulk states originating from anisotropic Fermi surfaces are needed. Here we show how strongly facetted Fermi surfaces and long quasiparticle mean free paths present in microstructures of PdCoO2 yield an in-plane resistivity anisotropy that is forbidden by symmetry on an infinite hexagonal lattice. Bar shaped transport devices narrower than the mean free path are carved from single crystals using focused ion beam (FIB) milling, such that the ballistic charge carriers at low temperatures frequently collide with both sidewalls defining a channel. Two symmetry-forbidden transport signatures appear: the in-plane resistivity anisotropy exceeds a factor of 2, and transverse voltages appear in zero magnetic field. We robustly identify the channel direction as the source of symmetry breaking via ballistic Monte- Carlo simulations and numerical solution of the Boltzmann equation.
References in corpus (8)
- Evidence for an electron nematic phase transition in underdoped iron pnictide superconductors
- Formation of a Nematic Fluid at High Fields in Sr3Ru2O7
- The properties of ultrapure delafossite metals
- Maximal Rashba-like spin splitting via kinetic energy-driven inversion symmetry breaking
- Electronic in-plane symmetry breaking at field-tuned quantum criticality in CeRhIn5
- Electron hydrodynamics with a polygonal Fermi surface
- Viscometry of electron fluids from symmetry
- Tuning of Fermi Contour Anisotropy in GaAs (001) 2D Holes via Strain
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