Spin-based technologies can operate at terahertz frequencies but require manipulation techniques that work at ultrafast timescales to become practical. For instance, devices based on spin waves, also known as magnons, require efficient generation of high-energy exchange spin waves at nanometre wavelengths. To achieve this, a substantial coupling is needed between the magnon modes and an electro-magnetic stimulus such as a coherent terahertz field pulse. However, it has been difficult to excite non-uniform spin waves efficiently using terahertz light because of the large momentum mismatch between the submillimetre-wave radiation and the nanometre-sized spin waves. Here we improve the light–matter interaction by engineering thin films to expl...
Spintronic terahertz (THz) emitters, consisting of ferromagnetic (FM)/non-magnetic (NM) thin films, ...
Structured light, particularly in the terahertz frequency range, holds considerable potential for a ...
We probed, in the time domain, the THz electromagnetic radiation originating from spins in CdMnTe di...
Spin-based technologies can operate at terahertz frequencies but require manipulation techniques tha...
Magnonics is a research field complementary to spintronics, in which the quanta of spin waves (magno...
Magnons, i.e. the quanta of spin waves, are considered to be promising information carriers. Unlike ...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
We investigate optically excited terahertz standing spin waves in noncollinear magnetic bilayers. Us...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
Spintronic terahertz (THz) emitters based on the inverse spin Hall effect in ferromagnetic/heavy met...
We generate terahertz (THz) transients by illuminating a few-nanometer-thick Ta/NiFe/Pt nanolayers w...
Launching and controlling magnons with laser pulses opens up new routes for applications including o...
Spintronic terahertz (THz) emitters, consisting of ferromagnetic (FM)/non-magnetic (NM) thin films, ...
Structured light, particularly in the terahertz frequency range, holds considerable potential for a ...
We probed, in the time domain, the THz electromagnetic radiation originating from spins in CdMnTe di...
Spin-based technologies can operate at terahertz frequencies but require manipulation techniques tha...
Magnonics is a research field complementary to spintronics, in which the quanta of spin waves (magno...
Magnons, i.e. the quanta of spin waves, are considered to be promising information carriers. Unlike ...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
The terahertz field ranges from 0.1THz to 30THz in the electromagnetic spectrum and has attracted si...
We investigate optically excited terahertz standing spin waves in noncollinear magnetic bilayers. Us...
Terahertz emission spectroscopy (TES) of ultrathin multilayers of magnetic and heavy metals has rece...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
The field of THz spintronics is a novel direction in the research field of nanomagnetism and spintro...
Spintronic terahertz (THz) emitters based on the inverse spin Hall effect in ferromagnetic/heavy met...
We generate terahertz (THz) transients by illuminating a few-nanometer-thick Ta/NiFe/Pt nanolayers w...
Launching and controlling magnons with laser pulses opens up new routes for applications including o...
Spintronic terahertz (THz) emitters, consisting of ferromagnetic (FM)/non-magnetic (NM) thin films, ...
Structured light, particularly in the terahertz frequency range, holds considerable potential for a ...
We probed, in the time domain, the THz electromagnetic radiation originating from spins in CdMnTe di...