International audienceUsing specially engineered structures to tailor the optical absorption in a metallic multilayer, we analyze the magnetization dynamics of a Co=Pt multilayer buried below a thick Cu layer. We demonstrate that hot electrons alone can very efficiently induce ultrafast demagnetization. Simulations based on hot electron ballistic transport implemented within a microscopic model that accounts for local dissipation of angular momentum nicely reproduce the experimental results, ruling out contribution of pure thermal transport
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Ultrafast demagnetization of ferromagnetic metals can be achieved by a heat pulse propagating in the...
Understanding and controlling the magnetization dynamics on the femtosecond timescale is becoming in...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
International audienceUsing specially engineered structures to tailor the optical absorption in a me...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Using specially engineered structures to tailor the optical absorption in a metallic multilayer, we ...
Ultrafast demagnetization of ferromagnetic metals can be achieved by a heat pulse propagating in the...
Understanding and controlling the magnetization dynamics on the femtosecond timescale is becoming in...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...
We report the magnetic response of Co/Pt multilayers to picosecond electrical heating. Using photoco...