Advances in growth technology of oxide materials allow single atomic layer control of heterostructures. In particular delta doping, a key materials' engineering tool in today's semiconductor technology, is now also available for oxides. Here we show that a fully electric-field-tunable spin-polarized and superconducting quasi-2D electron system (q2DES) can be artificially created by inserting a few unit cells of delta doping EuTiO3 at the interface between LaAlO3 and SrTiO3 oxides. Spin polarization emerges below the ferromagnetic transition temperature of the EuTiO3 layer (TFM = 6-8 K) and is due to the exchange interaction between the magnetic moments of Eu-4f and of Ti-3d electrons. Moreover, in a large region of the phase diagram, superc...
Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs) triggers intriguing phenomena...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs) triggers intriguing phenomena...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
Advances in growth technology of oxide materials allow single atomic layer control of heterostructur...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs) triggers intriguing phenomena...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...
International audienceAbstract Multi-orbital physics in quasi-two-dimensional electron gases (q2DEGs...