In this work, the laser-induced magnetization dynamics of nanostructured nickel films is investigated. The influence of the nanosize is discussed considering the timescale of hundreds of femtoseconds as well as the GHz regime. While no nanosize effect is observed on the short timescale, the excited magnetic mode in the GHz regime can be identified by comparison with micromagnetic simulations. The thickness dependence reveals insight into the dipole interaction between single nickel structures. Also, transient reflectivity changes are discussed.DFG/SPP/113
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Copyright © 2002 American Institute of PhysicsOptically induced ultrafast demagnetization has been s...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
As a classic ferromagnetic material, nickel has been an important research candidate used to study d...
As a classic ferromagnetic material, nickel has been an important research candidate used to study d...
By correlating time- and angle-resolved photoemission (Tr-ARPES) and time-resolved transverse- magne...
The mechanism underlying femtosecond laser-pulse-induced ultrafast magnetization dynamics remains el...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
Copyright © 2002 American Institute of PhysicsOptically induced ultrafast demagnetization has been s...
Several magnetic and optical processes contribute to the magneto-optical response of nickel thin fil...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
As a classic ferromagnetic material, nickel has been an important research candidate used to study d...
As a classic ferromagnetic material, nickel has been an important research candidate used to study d...
By correlating time- and angle-resolved photoemission (Tr-ARPES) and time-resolved transverse- magne...
The mechanism underlying femtosecond laser-pulse-induced ultrafast magnetization dynamics remains el...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...
International audienceThe mechanism underlying femtosecond laser pulse induced ultrafast magnetizati...