A detailed understanding of the different mechanisms being responsible for terahertz (THz) emission in ferromagnetic (FM) materials will aid in designing efficient THz emitters. In this report, we present direct evidence of THz emission from single layer Co0.4Fe0.4B0.2 (CoFeB) FM thin films. The dominant mechanism being responsible for the THz emission is the anomalous Hall effect (AHE), which is an effect of a net backflow current in the FM layer created by the spin polarized current reflected at the interfaces of the FM layer. The THz emission from the AHE-based CoFeB emitter is optimized by varying its thickness, orientation, and pump fluence of the laser beam. Results from electrical transport measurements show that skew scattering of c...
In bilayers of ferromagnets and heavy metals, which form the so-called spintronic emitters, the phen...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Narrow-band terahertz emission from coherently excited spin precession in metallic ferrimagnetic Mn3...
A detailed understanding of the different mechanisms being responsible for terahertz (THz) emission ...
Summary: Ultrafast THz radiation generation from ferromagnetic/nonmagnetic (FM/NM) spintronic hetero...
Abstract The anomalous Hall effect (AHE) is a fundamental spintronic charge‐to‐charge‐current conve...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
The anomalous Hall effect AHE is a fundamental spintronic charge to charge current conversion phen...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
We have experimentally investigated the field- and fluence-dependent terahertz (THz) emission behavi...
We generated pulses of electromagnetic radiation in the terahertz (THz) frequency range by optical e...
Contains fulltext : 236606.pdf (Publisher’s version ) (Open Access)Ultrashort lase...
Recently, ferromagnetic (FM) heterostructures have been demonstrated to emit THz radiation induced b...
In bilayers of ferromagnets and heavy metals, which form the so-called spintronic emitters, the phen...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Narrow-band terahertz emission from coherently excited spin precession in metallic ferrimagnetic Mn3...
A detailed understanding of the different mechanisms being responsible for terahertz (THz) emission ...
Summary: Ultrafast THz radiation generation from ferromagnetic/nonmagnetic (FM/NM) spintronic hetero...
Abstract The anomalous Hall effect (AHE) is a fundamental spintronic charge‐to‐charge‐current conve...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
The anomalous Hall effect AHE is a fundamental spintronic charge to charge current conversion phen...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
The anomalous Hall effect (AHE) is a fundamental spintronic charge-to-charge-current conversion phen...
We have experimentally investigated the field- and fluence-dependent terahertz (THz) emission behavi...
We generated pulses of electromagnetic radiation in the terahertz (THz) frequency range by optical e...
Contains fulltext : 236606.pdf (Publisher’s version ) (Open Access)Ultrashort lase...
Recently, ferromagnetic (FM) heterostructures have been demonstrated to emit THz radiation induced b...
In bilayers of ferromagnets and heavy metals, which form the so-called spintronic emitters, the phen...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rec...
Narrow-band terahertz emission from coherently excited spin precession in metallic ferrimagnetic Mn3...