We study, in the frame of the discrete dipole approximation, the magnons propagation through a simple multiplexing device made of chains of magnetic nanoparticles along which a small chains (called a resonators) is attached. We show that this simple structure can transfer with selectivity one magnon frequency from one chain to the other, leaving neighbour magnonic frequencies unaffected. With an appropriate choice of the geometrical (or magnetic) parameters of the structure, it is possible to control the desired magnon ejection. A general analytical expression for the transmission coefficient is given for various structures of this kind within the framework of the Green’s function method. The amplitude, the phase, and the phase time of the ...
Magnonic crystals and gratings could enable tunable spin-wave filters, logic, and frequency multipli...
Magnonics as an emerging nanotechnology offers functionalities beyond current semi-conductor technol...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
We study, in the frame of the discrete dipole approximation, the magnons propagation through a simpl...
International audienceA fundamental understanding of nanoscaled materials has become an important ch...
International audienceWe report a theoretical study on the effect of the exchange coupling on magnon...
International audienceWe present a magnetic demultiplexer that allows us to transfer a magnon from o...
The emerging field of magnonics uses spin waves and their quanta, magnons, to implement wave-based c...
International audienceIn the frame of long-wavelength Heisenberg model, a simple magnonic mono-mode ...
The emerging field of magnonics employs spin waves and their quanta, magnons, to implement wave-base...
An attractive direction in next-generation information processing is the development of systems empl...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Magnonics is an emerging research area where magnons or spin waves are used as a medium of informati...
International audienceA simple magnetic device consisting of two dangling side stubs grafted at the ...
An optical frequency comb consists of a set of discrete and equally spaced frequencies and has found...
Magnonic crystals and gratings could enable tunable spin-wave filters, logic, and frequency multipli...
Magnonics as an emerging nanotechnology offers functionalities beyond current semi-conductor technol...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
We study, in the frame of the discrete dipole approximation, the magnons propagation through a simpl...
International audienceA fundamental understanding of nanoscaled materials has become an important ch...
International audienceWe report a theoretical study on the effect of the exchange coupling on magnon...
International audienceWe present a magnetic demultiplexer that allows us to transfer a magnon from o...
The emerging field of magnonics uses spin waves and their quanta, magnons, to implement wave-based c...
International audienceIn the frame of long-wavelength Heisenberg model, a simple magnonic mono-mode ...
The emerging field of magnonics employs spin waves and their quanta, magnons, to implement wave-base...
An attractive direction in next-generation information processing is the development of systems empl...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Magnonics is an emerging research area where magnons or spin waves are used as a medium of informati...
International audienceA simple magnetic device consisting of two dangling side stubs grafted at the ...
An optical frequency comb consists of a set of discrete and equally spaced frequencies and has found...
Magnonic crystals and gratings could enable tunable spin-wave filters, logic, and frequency multipli...
Magnonics as an emerging nanotechnology offers functionalities beyond current semi-conductor technol...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...