6533b86ffe1ef96bd12cd50e

RESEARCH PRODUCT

Control of transport phenomena in magnetic heterostructures by wavelength modulation

Christopher SeibelMarius WeberMartin StiehlSebastian T. WeberMartin AeschlimannHans Christian SchneiderBenjamin StadtmüllerBaerbel Rethfeld

subject

Condensed Matter - Mesoscale and Nanoscale PhysicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)FOS: Physical sciencesPhysics::Optics

description

We demonstrate the tuneablity of the ultrafast energy flow in magnetic/non-magnetic bilayer structures by changing the wavelength of the optical excitation. This is achieved by an advanced description of the temperature based $\mu$T-model that explicitly considers the wavelength- and layer-dependent absorption profile within multilayer structures. For the exemplary case of a Ni/Au bilayer, our simulations predict that the energy flow from Ni to Au is reversed when changing the wavelength of the excitation from the infrared to the ultraviolet spectral range. These predictions are fully supported by characteristic signatures in the magneto-optical Kerr traces of the Ni/Au model system. Our results will open up new avenues to steer and control the energy transport in designed magnetic multilayer for ultrafast spintronic applications.

https://doi.org/10.1103/physrevb.106.l140405