Magnonics is a research field complementary to spintronics, in which the quanta of spin waves (magnons) replace electrons as information carriers, promising lower dissipation1–3. The development of ultrafast, nanoscale magnonic logic circuits calls for new tools and materials to generate coherent spin waves with frequencies as high and wavelengths as short as possible4,5. Antiferromagnets can host spin waves at terahertz frequencies and are therefore seen as a future platform for the fastest and least dissipative transfer of information6–11. However, the generation of short-wavelength coherent propagating magnons in antiferromagnets has so far remained elusive. Here we report the efficient emission and detection of a nanometre-scale wavepac...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
Understanding of the ultrafast spin dynamics is essential for application and further development of...
Magnonics is a research field complementary to spintronics, in which the quanta of spin waves (magno...
Spin-based technologies can operate at terahertz frequencies but require manipulation techniques tha...
Recent interest in developing fast spintronic devices and laser-controllable magnetic solids has spa...
Magnons, i.e. the quanta of spin waves, are considered to be promising information carriers. Unlike ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
Abstract Collective spin excitations in magnetically ordered crystals, called magnons or spin waves,...
As conventional electronics approaches its fundamental limits, novel concepts of ultrafast quantum c...
In this Report, we address fundamental issues associated with a novel magnonic approach for infor-ma...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
Understanding of the ultrafast spin dynamics is essential for application and further development of...
Magnonics is a research field complementary to spintronics, in which the quanta of spin waves (magno...
Spin-based technologies can operate at terahertz frequencies but require manipulation techniques tha...
Recent interest in developing fast spintronic devices and laser-controllable magnetic solids has spa...
Magnons, i.e. the quanta of spin waves, are considered to be promising information carriers. Unlike ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
Abstract Collective spin excitations in magnetically ordered crystals, called magnons or spin waves,...
As conventional electronics approaches its fundamental limits, novel concepts of ultrafast quantum c...
In this Report, we address fundamental issues associated with a novel magnonic approach for infor-ma...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
Terahertz electromagnetic radiation is extremely useful for numerous applications, including imaging...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
Understanding of the ultrafast spin dynamics is essential for application and further development of...