In this thesis, we have studied the properties of yttrium iron garnet (YIG) and antiferromagneticvan der Waals materials via spin currents. Devices were fabricated on top ofthese materials to study magnon transport in these materials using a nonlocal geometry.Furthermore, the interaction of a spin current, generated in a heavy metal, with the toplayers of the magnets were studied to characterize the magnetization texture.The magnetic materials studied in thesis are insulators, and therefore, the spins arenot transported via conducting electrons but via spin waves, called magnons. Magnonsare the quantized representation of the magnetic excitation of a magnetically orderedsystem. In this thesis, we have excited them electrically and thermally...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
In this thesis, we have studied the properties of yttrium iron garnet (YIG) and antiferromagneticvan...
In this thesis, we have studied the properties of yttrium iron garnet (YIG) and antiferromagneticvan...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
In this thesis, we have studied the properties of yttrium iron garnet (YIG) and antiferromagneticvan...
In this thesis, we have studied the properties of yttrium iron garnet (YIG) and antiferromagneticvan...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnons are quasiparticle representations of spin waves, which describe the collective excitations o...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Magnetic insulators offer the possibility to develop low-power spintronic devices by utilizing magno...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...
Conductivities are key material parameters that govern various types of transport (electronic charge...