Spintronic terahertz emitters are novel, broadband and efficient sources of terahertz radiation, which emerged at the intersection of ultrafast spintronics and terahertz photonics. They are based on efficient spin-current generation, spin-to-charge-current and current-to-field conversion at terahertz rates. In this review, we address the recent developments and applications, the current understanding of the physical processes as well as the future challenges and perspectives of broadband spintronic terahertz emitters
In this work, we improve the performance of an optically pumped spintronic terahertz emitter (STE) b...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....
Electron spins are envisioned to play a key role in future information technologies. Apart from com...
Spintronic terahertz emitters are broadband and efficient sources of terahertz radiation, which emer...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
Spintronic terahertz (THz) emitters, consisting of ferromagnetic (FM)/non-magnetic (NM) thin films, ...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
Effective emission of picosecond terahertz (THz) pulses using optical femtosecond pul- ses is the ba...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
We systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
This is the final version. Available on open access from AIP Publishing via the DOI in this recordWe...
We explore the capabilities of metallic spintronic thin-film stacks as a source of intense and broad...
We explore the capabilities of metallic spintronic thin-film stacks as a source of intense and broad...
In this work, we improve the performance of an optically pumped spintronic terahertz emitter (STE) b...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....
Electron spins are envisioned to play a key role in future information technologies. Apart from com...
Spintronic terahertz emitters are broadband and efficient sources of terahertz radiation, which emer...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
Spintronic terahertz (THz) emitters, consisting of ferromagnetic (FM)/non-magnetic (NM) thin films, ...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
Effective emission of picosecond terahertz (THz) pulses using optical femtosecond pul- ses is the ba...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
We systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
This is the final version. Available on open access from AIP Publishing via the DOI in this recordWe...
We explore the capabilities of metallic spintronic thin-film stacks as a source of intense and broad...
We explore the capabilities of metallic spintronic thin-film stacks as a source of intense and broad...
In this work, we improve the performance of an optically pumped spintronic terahertz emitter (STE) b...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....
Electron spins are envisioned to play a key role in future information technologies. Apart from com...