Rashba interfaces have emerged as promising platforms for spin-charge interconversion through the direct and inverse Edelstein effects. Notably, oxide-based two-dimensional electron gases display a large and gate-tunable conversion efficiency, as determined by transport measurements. However, a direct visualization of the Rashba-split bands in oxide two-dimensional electron gases is lacking, which hampers an advanced understanding of their rich spin-orbit physics. Here, we investigate KTaO3 two-dimensional electron gases and evidence their Rashba-split bands using angle resolved photoemission spectroscopy. Fitting the bands with a tight-binding Hamiltonian, we extract the effective Rashba coefficient and bring insight into the complex multi...
Funding: European Research Council (through the QUESTDO project), Royal Society, the Engineering and...
International audienceTwo-dimensional electron gases (2DEGs) forming at the interfaces of transition...
2D electron gases (2DEGs) in oxides show great potential for the discovery of new physical phenomena...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
An emerging field of spintronics, called spin-orbitronics, enables the inter-conversion between char...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
Rashba-like spin-orbit interaction at oxide heterostructures emerges as a much sought-after feature ...
Two-dimensional electron gases(2DEGs)based on KTaO3 are emerging as a promising platform for spin-or...
In the two-dimensional electron gas emerging at the transition metal oxide surface and interface, va...
The Rashba physics has been intensively studied in the field of spin orbitronics for the purpose of ...
This work was supported by the UK EPSRC (EP/I031014/1), the ERC (207901), the SNSF (200021-146995), ...
The Rashba physics has been intensively studied in the field of spin orbitronics for the purpose of ...
The discovery of two-dimensional electron gases (2DEGs) at oxide interfaces-involving electrons in n...
Funding: European Research Council (through the QUESTDO project), Royal Society, the Engineering and...
International audienceTwo-dimensional electron gases (2DEGs) forming at the interfaces of transition...
2D electron gases (2DEGs) in oxides show great potential for the discovery of new physical phenomena...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
An emerging field of spintronics, called spin-orbitronics, enables the inter-conversion between char...
We report the control of Rashba spin-orbit interaction by tuning asymmetric hybridization between Ti...
Rashba-like spin-orbit interaction at oxide heterostructures emerges as a much sought-after feature ...
Two-dimensional electron gases(2DEGs)based on KTaO3 are emerging as a promising platform for spin-or...
In the two-dimensional electron gas emerging at the transition metal oxide surface and interface, va...
The Rashba physics has been intensively studied in the field of spin orbitronics for the purpose of ...
This work was supported by the UK EPSRC (EP/I031014/1), the ERC (207901), the SNSF (200021-146995), ...
The Rashba physics has been intensively studied in the field of spin orbitronics for the purpose of ...
The discovery of two-dimensional electron gases (2DEGs) at oxide interfaces-involving electrons in n...
Funding: European Research Council (through the QUESTDO project), Royal Society, the Engineering and...
International audienceTwo-dimensional electron gases (2DEGs) forming at the interfaces of transition...
2D electron gases (2DEGs) in oxides show great potential for the discovery of new physical phenomena...