Spin transport is crucial for future spintronic devices operating at bandwidths up to the terahertz (THz) range. In F|N thin-film stacks made of a ferro/ferrimagnetic layer F and a normal-metal layer N, spin transport is mediated by (1) spin-polarized conduction electrons and/or (2) torque between electron spins. To identify a cross-over from (1) to (2), we study laser-driven spin currents in F|Pt stacks where F consists of model materials with different degrees of electrical conductivity. For the magnetic insulators YIG, GIG and maghemite, identical dynamics is observed. It arises from the THz interfacial spin Seebeck effect (SSE), is fully determined by the relaxation of the electrons in the metal layer and provides an estimate of the spi...
Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switchin...
Optically-induced spin currents have proven to be useful in spintronics applications, allowing for s...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Spin transport is crucial for future spintronic devices operating at bandwidths up to the terahertz ...
Spin transport is crucial for future spintronic devices operating at bandwidths up to the terahertz ...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Laser-induced terahertz spin transport (TST) and ultrafast demagnetization (UDM) are central but so ...
Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switchin...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
In spin-based electronics, information is encoded by the spin state of electron bunches. Processing ...
Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switchin...
Optically-induced spin currents have proven to be useful in spintronics applications, allowing for s...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Spin transport is crucial for future spintronic devices operating at bandwidths up to the terahertz ...
Spin transport is crucial for future spintronic devices operating at bandwidths up to the terahertz ...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Laser-induced terahertz spin transport (TST) and ultrafast demagnetization (UDM) are central but so ...
Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switchin...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
In spin-based electronics, information is encoded by the spin state of electron bunches. Processing ...
Several rare-earth transition-metal ferrimagnetic systems exhibit all-optical magnetization switchin...
Optically-induced spin currents have proven to be useful in spintronics applications, allowing for s...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...