Using ultrafast resonant soft x-ray diffraction, we demonstrate photoinduced melting of antiferromagnetic order in the correlated electron insulator NdNiO$_3$. Time-dependent analysis of the resonant diffraction spectra allows us to follow the temporal evolution of the charge imbalance between adjacent Ni sites. A direct correlation between the melting of magnetic order and charge rebalancing is found. Furthermore, we demonstrate that the magnetic ordering on the Ni and Nd sites, which are locked together in equilibrium, become decoupled during this nonthermal process
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
In complex materials observed electronic phases and transitions between them often involve coupling ...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
Using ultrafast resonant soft x-ray diffraction, we demonstrate photoinduced melting of antiferromag...
Using ultrafast resonant soft x-ray diffraction, we demonstrate photoinduced melting of antiferromag...
Soft x-ray resonant magnetic diffraction at the Nd M edges was performed on a NdNiO3 epitaxial film ...
Material properties can be controlled via strain, pressure, chemical composition, or dimensionality....
We use resonant soft x-ray diffraction to track the photoinduced dynamics of the antiferromagnetic s...
We report detailed magnetization measurements on the perovskite oxide NdNiO3. This system has a firs...
We use resonant soft x-ray diffraction to track the photoinduced dynamics of the antiferromagnetic s...
International audienceNeutron-diffraction experiments and polarization analysis techniques reveal th...
We have carried out resonant x-ray scattering experiments on NdNiO3 single crystals aiming at the ob...
We use femtosecond Resonant Soft X-ray Diffraction to observe heterogeneous melting of antiferromagn...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
In complex materials observed electronic phases and transitions between them often involve coupling ...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
Using ultrafast resonant soft x-ray diffraction, we demonstrate photoinduced melting of antiferromag...
Using ultrafast resonant soft x-ray diffraction, we demonstrate photoinduced melting of antiferromag...
Soft x-ray resonant magnetic diffraction at the Nd M edges was performed on a NdNiO3 epitaxial film ...
Material properties can be controlled via strain, pressure, chemical composition, or dimensionality....
We use resonant soft x-ray diffraction to track the photoinduced dynamics of the antiferromagnetic s...
We report detailed magnetization measurements on the perovskite oxide NdNiO3. This system has a firs...
We use resonant soft x-ray diffraction to track the photoinduced dynamics of the antiferromagnetic s...
International audienceNeutron-diffraction experiments and polarization analysis techniques reveal th...
We have carried out resonant x-ray scattering experiments on NdNiO3 single crystals aiming at the ob...
We use femtosecond Resonant Soft X-ray Diffraction to observe heterogeneous melting of antiferromagn...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...
In complex materials observed electronic phases and transitions between them often involve coupling ...
The dynamics of an order parameter's amplitude and phase determines the collective behaviour of nove...