We predict that magnon motive force can lead to temperature dependent, nonlinear chiral damping in both conducting and insulating ferromagnets. We estimate that this damping can significantly influence the motion of skyrmions and domain walls at finite temperatures. We also find that in systems with low Gilbert damping moving chiral magnetic textures and resulting magnon motive forces can induce large spin and energy currents in the transverse direction
In metallic ferromagnets, the interaction between local magnetic moments and conduction electrons re...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
The Doppler shift of the quasiparticle dispersion by charge currents is responsible for the critical...
We predict that magnon motive force can lead to temperature dependent, nonlinear chiral damping in b...
We predict that a temperature gradient can induce a magnon-mediated intrinsic torque in systems with...
We formulate a microscopic linear response theory of magnon pumping applicable to multiple-magnonic-...
We formulate a phenomenological description of thin ferromagnetic layers with inversion asymmetry wh...
Control of magnetic domain wall motion holds promise for efficient manipulation and transfer of magn...
International audienceFriction plays an essential role in most physical processes that we experience...
We derive thermomagnonic torque and its “β-type” dissipative correction from the stochastic Landau-L...
Spin polarized currents originate a spin-transfer torque that enables the manipulation of magnetic t...
[EN]We measure and analyze the chirality of Dzyaloshinskii-Moriya-interaction (DMI) stabilized spin ...
Spin-polarized currents originate a spin-transfer torque that enables the manipulation of magnetic t...
We study the influence of non-local damping on magnon properties of Fe, Co, Ni and Fe$_{1-x}$Co$_{x}...
We observe that an rf microwave field strongly influences the transport of incoherent thermal magnon...
In metallic ferromagnets, the interaction between local magnetic moments and conduction electrons re...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
The Doppler shift of the quasiparticle dispersion by charge currents is responsible for the critical...
We predict that magnon motive force can lead to temperature dependent, nonlinear chiral damping in b...
We predict that a temperature gradient can induce a magnon-mediated intrinsic torque in systems with...
We formulate a microscopic linear response theory of magnon pumping applicable to multiple-magnonic-...
We formulate a phenomenological description of thin ferromagnetic layers with inversion asymmetry wh...
Control of magnetic domain wall motion holds promise for efficient manipulation and transfer of magn...
International audienceFriction plays an essential role in most physical processes that we experience...
We derive thermomagnonic torque and its “β-type” dissipative correction from the stochastic Landau-L...
Spin polarized currents originate a spin-transfer torque that enables the manipulation of magnetic t...
[EN]We measure and analyze the chirality of Dzyaloshinskii-Moriya-interaction (DMI) stabilized spin ...
Spin-polarized currents originate a spin-transfer torque that enables the manipulation of magnetic t...
We study the influence of non-local damping on magnon properties of Fe, Co, Ni and Fe$_{1-x}$Co$_{x}...
We observe that an rf microwave field strongly influences the transport of incoherent thermal magnon...
In metallic ferromagnets, the interaction between local magnetic moments and conduction electrons re...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
The Doppler shift of the quasiparticle dispersion by charge currents is responsible for the critical...