We explore the capabilities of metallic spintronic thin-film stacks as a source of intense and broadband terahertz electromagnetic fields. For this purpose, we excite a W/CoFeB/Pt trilayer (thickness of 5.6 nm) on a large-area glass substrate (diameter of 7.5 cm) by a femtosecond laser pulse (energy 5.5 mJ, duration 40 fs, and wavelength 800 nm). After focusing, the emitted terahertz pulse is measured to have a duration of 230 fs, a peak field of 300 kV cm−1, and an energy of 5 nJ. In particular, the waveform exhibits a gapless spectrum extending from 1 to 10 THz at 10% of its amplitude maximum, thereby facilitating nonlinear control over matter in this difficult-to-reach frequency range on the sub-picosecond time scale
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....
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...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
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 systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Metallic spintronic terahertz (THz) emitters have become well-established for offering ultra-broadba...
Spintronic terahertz emitters are novel, broadband and efficient sources of terahertz radiation, whi...
Effective emission of picosecond terahertz (THz) pulses using optical femtosecond pul- ses is the ba...
In this work, we improve the performance of an optically pumped spintronic terahertz emitter (STE) b...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....
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...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
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 systematically study the pump-wavelength dependence of terahertz pulse generation in thin-film sp...
Metallic spintronic terahertz (THz) emitters have become well-established for offering ultra-broadba...
Spintronic terahertz emitters are novel, broadband and efficient sources of terahertz radiation, whi...
Effective emission of picosecond terahertz (THz) pulses using optical femtosecond pul- ses is the ba...
In this work, we improve the performance of an optically pumped spintronic terahertz emitter (STE) b...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
A review on the recent development of intense laser‐driven terahertz (THz) sources is provided here....