Here, we use low-temperature scanning tunneling microscopy and spectroscopy to study the polar surfaces of PdCoO2. On the CoO2-terminated polar surface, we detect the quasiparticle interference pattern originating from the Rashba-like spin-split surface states. On the well-ordered Pd-terminated polar surface, we observe a regular lattice that has a larger lattice constant than the atomic lattice of PdCoO2. In comparison with the shape of the hexagonal Fermi surface on the Pd-terminated surface, we identify this regular lattice as a fully two-dimensional incommensurate charge modulation that is driven by the Fermi surface nesting. More interestingly, we also find the moir & eacute; pattern induced by the interference between the two-dimensio...
We report the electronic and transport properties of the triangular antiferromagnet PdCrO2 at high m...
We study the low-energy surface electronic structure of the transition-metal dichalcogenide supercon...
The authors acknowledge funding from the UK EPSRC, the MEXT KAKENHI (Grant No. 21340100), the Royal ...
The ability to modulate the collective properties of correlated electron systems at their interfaces...
We have investigated the Fermi surface (FS) and electronic structure of delafossite PdCoO2. We have ...
Funding: Engineering and Physical Sciences Research Council, UK (Grant No. EP/I031014/1); VS, LB, an...
When a three-dimensional material is constructed by stacking different two-dimensional layers into a...
Controlling spin wave excitations in magnetic materials underpins the burgeoning field of magnonics....
International audienceThe origin of the quasi two-dimensional behavior of PdCoO2 and PtCoO2 is inves...
The delafossite series of layered oxides includes some of the highest conductivity metals ever disco...
Utilizing the powerful combination of molecular-beam epitaxy (MBE) and angle-resolved photoemission ...
Controlling spin wave excitations in magnetic materials underpins the burgeoning field of magnonics....
Funding: We gratefully acknowledge support from the European Research Council (through the QUESTDO p...
PdCrO2 is material which has attracted interest due to the coexistence of metallic conductivity asso...
Geometric electron optics may be implemented in solids when electron transport is ballistic on the l...
We report the electronic and transport properties of the triangular antiferromagnet PdCrO2 at high m...
We study the low-energy surface electronic structure of the transition-metal dichalcogenide supercon...
The authors acknowledge funding from the UK EPSRC, the MEXT KAKENHI (Grant No. 21340100), the Royal ...
The ability to modulate the collective properties of correlated electron systems at their interfaces...
We have investigated the Fermi surface (FS) and electronic structure of delafossite PdCoO2. We have ...
Funding: Engineering and Physical Sciences Research Council, UK (Grant No. EP/I031014/1); VS, LB, an...
When a three-dimensional material is constructed by stacking different two-dimensional layers into a...
Controlling spin wave excitations in magnetic materials underpins the burgeoning field of magnonics....
International audienceThe origin of the quasi two-dimensional behavior of PdCoO2 and PtCoO2 is inves...
The delafossite series of layered oxides includes some of the highest conductivity metals ever disco...
Utilizing the powerful combination of molecular-beam epitaxy (MBE) and angle-resolved photoemission ...
Controlling spin wave excitations in magnetic materials underpins the burgeoning field of magnonics....
Funding: We gratefully acknowledge support from the European Research Council (through the QUESTDO p...
PdCrO2 is material which has attracted interest due to the coexistence of metallic conductivity asso...
Geometric electron optics may be implemented in solids when electron transport is ballistic on the l...
We report the electronic and transport properties of the triangular antiferromagnet PdCrO2 at high m...
We study the low-energy surface electronic structure of the transition-metal dichalcogenide supercon...
The authors acknowledge funding from the UK EPSRC, the MEXT KAKENHI (Grant No. 21340100), the Royal ...