The efficient conversion of spin to charge transport and vice versa is of major relevance for the detection and generation of spin currents in spin‐based electronics. Interfaces of heterostructures are known to have a marked impact on this process. Here, terahertz (THz) emission spectroscopy is used to study ultrafast spin‐to‐charge‐current conversion (S2C) in about 50 prototypical F|N bilayers consisting of a ferromagnetic layer F (e.g., Ni81Fe19, Co, or Fe) and a nonmagnetic layer N with strong (Pt) or weak (Cu and Al) spin‐orbit coupling. Varying the structure of the F/N interface leads to a drastic change in the amplitude and even inversion of the polarity of the THz charge current. Remarkably, when N is a material with small spin Hall ...
Summary: Ultrafast THz radiation generation from ferromagnetic/nonmagnetic (FM/NM) spintronic hetero...
Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic a...
Recent developments in nanomagnetism and spintronics have enabled the use of ultrafast spin physics ...
The efficient conversion of spin to charge transport and vice versa is of major relevance for the de...
Spintronic structures are extensively investigated for their spin-orbit torque properties, required ...
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...
Transition-metal dichalcogenides (TMDCs) are an aspiring class of materials with unique electronic a...
Data of the publication "Terahertz Spin-to-Charge Conversion by Interfacial Skew Scattering in Metal...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic a...
20 pagesInternational audienceSpintronic structures are extensively investigated for their spin orbi...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Summary: Ultrafast THz radiation generation from ferromagnetic/nonmagnetic (FM/NM) spintronic hetero...
Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic a...
Recent developments in nanomagnetism and spintronics have enabled the use of ultrafast spin physics ...
The efficient conversion of spin to charge transport and vice versa is of major relevance for the de...
Spintronic structures are extensively investigated for their spin-orbit torque properties, required ...
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...
Transition-metal dichalcogenides (TMDCs) are an aspiring class of materials with unique electronic a...
Data of the publication "Terahertz Spin-to-Charge Conversion by Interfacial Skew Scattering in Metal...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic a...
20 pagesInternational audienceSpintronic structures are extensively investigated for their spin orbi...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
Understanding the transfer of spin angular momentum is essential in modern magnetism research. A mod...
Summary: Ultrafast THz radiation generation from ferromagnetic/nonmagnetic (FM/NM) spintronic hetero...
Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic a...
Recent developments in nanomagnetism and spintronics have enabled the use of ultrafast spin physics ...