Oxide materials possess a vast range of functional properties, ranging from superconductivity to multiferroicity, that stem from the interplay between the lattice, charge, spin and orbital degrees of freedom, and electron correlations often play an important role in defining such properties. Historically, spin–orbit coupling was rarely a dominant energy scale in oxides. However, it recently became the focus of intense interest and was exploited to realize various exotic phenomena connected with real-space and reciprocal-space topology that may be harnessed in spintronics applications. In this Review, we survey the recent advances in the new field of oxide spin-orbitronics, with a special focus on spin–charge interconversion through the dire...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
In situ electrical control of the Dzyaloshinskii-Moriya interaction (DMI) is one of the central but ...
Significant progress in materials science of the past decade is associated with the emerging paradig...
International audienceQuantum oxide materials possess a vast range of properties stemming from the i...
Submitted to Nature Reviews MaterialsQuantum oxide materials possess a vast range of properties stem...
Within the last twenty years, the status of the spin–orbit interaction has evolved from that of a si...
International audienceThe transition metal oxide family harbors various types of materials of intere...
Non-trivial/chiral spin textures like skyrmions originate from inversion symmetry breaking. Moreover...
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,...
Within the last twenty years, the status of the spinorbit interaction has evolved from that of a sim...
Strong correlated interplay of spin, orbital and lattice degrees of freedom in complex oxide materia...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
Announcement of 2022 IEEE Magnetics Society IEEE Distinguished LecturersThe ever-increasing demand f...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
In situ electrical control of the Dzyaloshinskii-Moriya interaction (DMI) is one of the central but ...
Significant progress in materials science of the past decade is associated with the emerging paradig...
International audienceQuantum oxide materials possess a vast range of properties stemming from the i...
Submitted to Nature Reviews MaterialsQuantum oxide materials possess a vast range of properties stem...
Within the last twenty years, the status of the spin–orbit interaction has evolved from that of a si...
International audienceThe transition metal oxide family harbors various types of materials of intere...
Non-trivial/chiral spin textures like skyrmions originate from inversion symmetry breaking. Moreover...
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,...
Within the last twenty years, the status of the spinorbit interaction has evolved from that of a sim...
Strong correlated interplay of spin, orbital and lattice degrees of freedom in complex oxide materia...
Strong interaction between the spin and orbital angular momentum of electrons in a material can give...
Announcement of 2022 IEEE Magnetics Society IEEE Distinguished LecturersThe ever-increasing demand f...
While spintronics has traditionally relied on ferromagnetic metals as spin generators and detectors,...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
In situ electrical control of the Dzyaloshinskii-Moriya interaction (DMI) is one of the central but ...
Significant progress in materials science of the past decade is associated with the emerging paradig...