Optical control of magnetism, of interest for high-speed data processing and storage, has only been demonstrated with near-infrared excitation to date. However, in absorbing materials, such high photon energies can lead to significant dissipation, making switch back times long and miniaturization challenging. In manganites, magnetism is directly coupled to the lattice, as evidenced by the response to external and chemical pressure, or to ferroelectric polarization. Here, femtosecond mid-infrared pulses are used to excite the lattice in La0.5Sr1.5MnO4 and the dynamics of electronic order are measured by femtosecond resonant soft x-ray scattering with an x-ray free electron laser. We observe that magnetic and orbital orders are reduced by exc...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
In this paper, we present recent results on ultrafast control and probing of strongly correlated-ele...
Optical control of magnetism, of interest for high-speed data processing and storage, has only been ...
Femtosecond midinfrared pulses are used to directly excite the lattice of the single-layer manganite...
Femtosecond midinfrared pulses are used to directly excite the lattice of the single-layer manganite...
In the mixed-valence manganites, a near-infrared laser typically melts the orbital and spin order si...
In the mixed-valence manganites, a near-infrared laser typically melts the orbital and spin order si...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
In this paper, we present recent results on ultrafast control and probing of strongly correlated-ele...
Optical control of magnetism, of interest for high-speed data processing and storage, has only been ...
Femtosecond midinfrared pulses are used to directly excite the lattice of the single-layer manganite...
Femtosecond midinfrared pulses are used to directly excite the lattice of the single-layer manganite...
In the mixed-valence manganites, a near-infrared laser typically melts the orbital and spin order si...
In the mixed-valence manganites, a near-infrared laser typically melts the orbital and spin order si...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
We used ultrafast resonant soft x-ray diffraction to probe the picosecond dynamics of spin and orbit...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
This thesis presents studies on how photoexcitation disturbs the o rdering of the elec- tronic degre...
In this paper, we present recent results on ultrafast control and probing of strongly correlated-ele...