We derive thermomagnonic torque and its “β-type” dissipative correction from the stochastic Landau-Lifshitz-Gilbert equation. The β-type dissipative correction describes viscous coupling between magnetic dynamics and magnonic current and it stems from spin mistracking of the magnetic order. We show that thermomagnonic torque is important for describing temperature gradient induced motion of skyrmions in helical magnets while dissipative correction plays an essential role in generating transverse Magnus force. We propose to detect such skyrmionic motion by employing the transverse spin Seebeck effect geometry
Here we study the effect of an additional interfacial spin-transfer torque, as well as the well-esta...
We predict that a temperature gradient can induce a magnon-mediated intrinsic torque in systems with...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...
We derive thermomagnonic torque and its “β-type” dissipative correction from the stochastic Landau-L...
We explore the dynamics of skyrmions with various topological charges induced by a temperature gradi...
It is well known that skyrmions can be driven using spin-orbit torques due to the spin-Hall effect. ...
Magnons are the elementary excitations of a magnetically ordered system. In ferromagnets, only a sin...
We develop a general phenomenology describing the interplay between coherent and incoherent dynamics...
Spontaneously emergent chirality is an issue of fundamental importance across the natural sciences. ...
peer reviewedIntegrating topologically stabilized magnetic textures such as skyrmions as nanoscale i...
The understanding of the dynamical properties of skyrmions is a fundamental aspect for the realizati...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
peer reviewedSkyrmions and antiskyrmions in magnetic ultrathin films are characterised by a topologi...
We present a theory of the Seebeck effect in nanomagnets with dimensions smaller than the spin diffu...
We predict that magnon motive force can lead to temperature dependent, nonlinear chiral damping in b...
Here we study the effect of an additional interfacial spin-transfer torque, as well as the well-esta...
We predict that a temperature gradient can induce a magnon-mediated intrinsic torque in systems with...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...
We derive thermomagnonic torque and its “β-type” dissipative correction from the stochastic Landau-L...
We explore the dynamics of skyrmions with various topological charges induced by a temperature gradi...
It is well known that skyrmions can be driven using spin-orbit torques due to the spin-Hall effect. ...
Magnons are the elementary excitations of a magnetically ordered system. In ferromagnets, only a sin...
We develop a general phenomenology describing the interplay between coherent and incoherent dynamics...
Spontaneously emergent chirality is an issue of fundamental importance across the natural sciences. ...
peer reviewedIntegrating topologically stabilized magnetic textures such as skyrmions as nanoscale i...
The understanding of the dynamical properties of skyrmions is a fundamental aspect for the realizati...
Magnetic skyrmions are topologically stabilized nanoscale spin structures that could be of use in th...
peer reviewedSkyrmions and antiskyrmions in magnetic ultrathin films are characterised by a topologi...
We present a theory of the Seebeck effect in nanomagnets with dimensions smaller than the spin diffu...
We predict that magnon motive force can lead to temperature dependent, nonlinear chiral damping in b...
Here we study the effect of an additional interfacial spin-transfer torque, as well as the well-esta...
We predict that a temperature gradient can induce a magnon-mediated intrinsic torque in systems with...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...