International audienceAll-optical helicity-dependent switching in ferromagnetic Co/Pt multilayers is investigated using magneto-optical microscopy and anomalous Hall effect measurements. A state diagram is built by studying the effect of pulse duration, fluence, and spot size. We use numerical solutions of the three-temperature model to explain that the all-optical helicity-dependent switching mechanism relies on the spin bath reaching temperatures close to the Curie point. Further insights into the reversal process are provided by the experimental demonstration of significant helicity-dependent reversal after a single laser pulse that reveals the involvement of direct angular momentum transfer. Moreover, based on the observation that longe...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
Time-resolved magneto-optical imaging reveals that the dynamics of the helicity-dependent all-optica...
Time-resolved magneto-optical imaging reveals that the dynamics of the helicity-dependent all-optica...
International audienceUsing a time-dependent electrical investigation of the all-optical switching i...
All-optical switching (AOS) of magnetization has been attracting an increasing attention due to the ...
Helicity-dependent all-optical induced magnetization switching has been achieved in Pt/Co/Pt samples...
All-optical switching (AOS) of magnetization in ferri- and ferromagnetic thin films has in recent ye...
The heating and helicity effects induced by circularly polarized laser excitation are entangled in t...
International audienceDomain wall displacement in Co/Pt thin films induced by not only femtosecond b...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
Time-resolved magneto-optical imaging reveals that the dynamics of the helicity-dependent all-optica...
Time-resolved magneto-optical imaging reveals that the dynamics of the helicity-dependent all-optica...
International audienceUsing a time-dependent electrical investigation of the all-optical switching i...
All-optical switching (AOS) of magnetization has been attracting an increasing attention due to the ...
Helicity-dependent all-optical induced magnetization switching has been achieved in Pt/Co/Pt samples...
All-optical switching (AOS) of magnetization in ferri- and ferromagnetic thin films has in recent ye...
The heating and helicity effects induced by circularly polarized laser excitation are entangled in t...
International audienceDomain wall displacement in Co/Pt thin films induced by not only femtosecond b...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
The manipulation of the magnetic direction by using the ultrafast laser pulse is attractive for its ...