We model the injection of elastic waves into a ferromagnetic film (F) by a nonmagnetic transducer (N). We compare the configurations in which the magnetization is normal and parallel to the wave propagation. The lack of axial symmetry in the former results in the emergence of evanescent interface states. We compute the energy-flux transmission across the N|F interface and sound-induced magnetization dynamics in the ferromagnet. We predict efficient acoustically induced pumping of spin current into a metal contact attached to F.QN/Quantum NanoscienceApplied Science
We formulate a scattering theory to study magnetic films in microwave cavities beyond the independen...
Spin waves have risen as promising candidate information carriers for the next generation of informa...
It is shown that, in the presence of sound waves, rotational states play an important role...
We model the injection of elastic waves into a ferromagnetic film (F) by a nonmagnetic transducer (N...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
We report a theory for the coherent and incoherent chiral pumping of spin waves into thin magnetic f...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
In recent years several experimental observations and theoretical predictions of unique phenomena in...
This is the final version of the article. Available from APS via the DOI in this recordWe have devel...
We study the excitation of spin waves in magnetic insulators by the current-induced spin-transfer to...
We propose a method to control surface phonon transport by weak magnetic fields based on the pumping...
In this work, we leverage atomistic spin-lattice simulations to examine how magnetic interactions im...
We investigate the reflection coefficient of spin waves propagating in an ultra-thin ferromagnetic f...
A microscopic, or Hamiltonian-based, theory is outlined for studying the spin-wave instability thres...
The study of magnetic nanostripes has gained importance in the last decade since this nanostructure ...
We formulate a scattering theory to study magnetic films in microwave cavities beyond the independen...
Spin waves have risen as promising candidate information carriers for the next generation of informa...
It is shown that, in the presence of sound waves, rotational states play an important role...
We model the injection of elastic waves into a ferromagnetic film (F) by a nonmagnetic transducer (N...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
We report a theory for the coherent and incoherent chiral pumping of spin waves into thin magnetic f...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
In recent years several experimental observations and theoretical predictions of unique phenomena in...
This is the final version of the article. Available from APS via the DOI in this recordWe have devel...
We study the excitation of spin waves in magnetic insulators by the current-induced spin-transfer to...
We propose a method to control surface phonon transport by weak magnetic fields based on the pumping...
In this work, we leverage atomistic spin-lattice simulations to examine how magnetic interactions im...
We investigate the reflection coefficient of spin waves propagating in an ultra-thin ferromagnetic f...
A microscopic, or Hamiltonian-based, theory is outlined for studying the spin-wave instability thres...
The study of magnetic nanostripes has gained importance in the last decade since this nanostructure ...
We formulate a scattering theory to study magnetic films in microwave cavities beyond the independen...
Spin waves have risen as promising candidate information carriers for the next generation of informa...
It is shown that, in the presence of sound waves, rotational states play an important role...