Ever since its discovery around a decade ago, all-optical magnetization switching (AOS) using femtosecond laser pulses has shown potential for future data storage and logic devices. In particular, single pulse helicity independent AOS in certain ferrimagnetic alloys and multilayers is highly efficient and ultrafast. However, in most cases it is a toggle mechanism, which is not desirable for applications. Here we experimentally demonstrate conversion from toggle switching to a deterministic mechanism by biasing AOS in a Co/Gd bilayer with a spin polarized current which is optically generated in an adjacent ferromagnetic reference layer. We show deterministic writing of an ‘up’ and ‘down’ state using a sequence of one or two pulses, respectiv...
Up until now, magnetic nanodots used for magnetic random access memory have required spin-polarized ...
All-optical switching of magnetic order presents a promising route toward faster and more energy eff...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
Ever since its discovery around a decade ago, all-optical magnetization switching (AOS) using femtos...
International audienceBeaurepaire and Bigot when they discovered the ultrafast demagnetization in Ni...
The ability to control magnetism in sub-picosecond timescales using laser pulses has potential appli...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
International audienceAll-optical ultrafast magnetization switching in magnetic material thin film w...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
International audienceUsing a time-dependent electrical investigation of the all-optical switching i...
All-optical switching (AOS) of magnetic materials describes the reversal of the magnetization using ...
Up until now, magnetic nanodots used for magnetic random access memory have required spin-polarized ...
All-optical switching of magnetic order presents a promising route toward faster and more energy eff...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
Ever since its discovery around a decade ago, all-optical magnetization switching (AOS) using femtos...
International audienceBeaurepaire and Bigot when they discovered the ultrafast demagnetization in Ni...
The ability to control magnetism in sub-picosecond timescales using laser pulses has potential appli...
Imagine being able to write magnetic information efficiently at THz data rates, creating such conten...
International audienceAll-optical ultrafast magnetization switching in magnetic material thin film w...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
International audienceUsing a time-dependent electrical investigation of the all-optical switching i...
All-optical switching (AOS) of magnetic materials describes the reversal of the magnetization using ...
Up until now, magnetic nanodots used for magnetic random access memory have required spin-polarized ...
All-optical switching of magnetic order presents a promising route toward faster and more energy eff...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...