We predict that the magnetization direction of a ferromagnet can be reversed by the spin-transfer torque accompanying spin-polarized thermoelectric heat currents. We illustrate the concept by applying a finite-element theory of thermoelectric transport in disordered magnetoelectronic circuits and devices to metallic spin valves. When thermalization is not complete, a spin heat accumulation vector is found in the normal-metal spacer, i.e., a directional imbalance in the temperature of majority and minority spins
We compute thermal spin transfer (TST) torques in Fe-MgO-Fe tunnel junctions using a first principle...
The study and understanding of spin-transport mechanisms including thermal fluctuation are required ...
Heat generation by electric current, which is ubiquitous in electronic devices and circuits, raises ...
In this article we extend the currently established diffusion theory of spin-dependent electrical co...
Spin caloritronics[1], an emerging branch of spintronics, studying the addition of thermal effects t...
Based on the spinor Boltzmann equation (SBE) formalism, we present a theory of temperature-dependent...
Dit proefschrift beschrijft fundamentele experimenten waarin de koppeling tussen de elektrische, mag...
We model and evaluate the Peltier and Seebeck effects in magnetic multilayer nanostructures by a fin...
More than ten years ago computers slowed down its evolution because physical limits were reached. Am...
We microscopically analyze thermal spin pumping mediated by magnons, at the interface between a ferr...
Magnon spintronics recently emerged as a fascinating topic. The scope of this Thesis is to investiga...
Large heat currents are obtained in Co/Cu/Co spin valves positioned at the middle of Cu nanowires. T...
This thesis advances the theory of quantum and semiclassical transport in magnetic heterostructures....
Magnon spintronics recently emerged as a fascinating topic. The scope of this Thesis is to investiga...
The existence of a heat-driven spin torque is demonstrated using Co/Cu/Co spin valves embedded in me...
We compute thermal spin transfer (TST) torques in Fe-MgO-Fe tunnel junctions using a first principle...
The study and understanding of spin-transport mechanisms including thermal fluctuation are required ...
Heat generation by electric current, which is ubiquitous in electronic devices and circuits, raises ...
In this article we extend the currently established diffusion theory of spin-dependent electrical co...
Spin caloritronics[1], an emerging branch of spintronics, studying the addition of thermal effects t...
Based on the spinor Boltzmann equation (SBE) formalism, we present a theory of temperature-dependent...
Dit proefschrift beschrijft fundamentele experimenten waarin de koppeling tussen de elektrische, mag...
We model and evaluate the Peltier and Seebeck effects in magnetic multilayer nanostructures by a fin...
More than ten years ago computers slowed down its evolution because physical limits were reached. Am...
We microscopically analyze thermal spin pumping mediated by magnons, at the interface between a ferr...
Magnon spintronics recently emerged as a fascinating topic. The scope of this Thesis is to investiga...
Large heat currents are obtained in Co/Cu/Co spin valves positioned at the middle of Cu nanowires. T...
This thesis advances the theory of quantum and semiclassical transport in magnetic heterostructures....
Magnon spintronics recently emerged as a fascinating topic. The scope of this Thesis is to investiga...
The existence of a heat-driven spin torque is demonstrated using Co/Cu/Co spin valves embedded in me...
We compute thermal spin transfer (TST) torques in Fe-MgO-Fe tunnel junctions using a first principle...
The study and understanding of spin-transport mechanisms including thermal fluctuation are required ...
Heat generation by electric current, which is ubiquitous in electronic devices and circuits, raises ...