In this paper, the authors demonstrate that cryogenic scanning transmission electron microscopy allows for the direct mapping of the local arrangements and symmetries of electronic order, providing a useful method for studying strongly correlated systems. They show this using the example of Nd1/2Sr1/2MnO3, a model charge ordered material
We study the origin of complex phase transitions in an electron-doped manganite, La<sub>0.2</sub>Sr<...
The science of manganites is characterised by a close interplay between charge, spin and lattice deg...
In the present paper, we continue our investigation on the antiferromagnetic origin of the charge or...
219 pagesIn materials where electrons strongly interact with other degrees of freedom, novel electro...
Incommensurate charge order in hole-doped oxides is intertwined with exotic phenomena such as coloss...
Incommensurate charge order in hole-doped oxides is intertwined with exotic phenomena such as coloss...
Transition-metal perovskite oxides exhibit a wide range of extraordinary but imperfectly understood ...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Constituent atoms and electrons determine matter properties together, and they can form long-range o...
Constituent atoms and electrons determine matter properties together, and they can form long-range o...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Commensurate and incommensurate charge ordering in La1-xCaxMnO3 are investigated by high resolution ...
Commensurate and incommensurate charge ordering in La1-xCaxMnO3 are investigated by high resolution ...
Abstract In the present paper, we continue our investigation on the antiferromagnetic origin of the ...
Correlated quantum materials are expected to provide the foundation for the next generation of infor...
We study the origin of complex phase transitions in an electron-doped manganite, La<sub>0.2</sub>Sr<...
The science of manganites is characterised by a close interplay between charge, spin and lattice deg...
In the present paper, we continue our investigation on the antiferromagnetic origin of the charge or...
219 pagesIn materials where electrons strongly interact with other degrees of freedom, novel electro...
Incommensurate charge order in hole-doped oxides is intertwined with exotic phenomena such as coloss...
Incommensurate charge order in hole-doped oxides is intertwined with exotic phenomena such as coloss...
Transition-metal perovskite oxides exhibit a wide range of extraordinary but imperfectly understood ...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Constituent atoms and electrons determine matter properties together, and they can form long-range o...
Constituent atoms and electrons determine matter properties together, and they can form long-range o...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Commensurate and incommensurate charge ordering in La1-xCaxMnO3 are investigated by high resolution ...
Commensurate and incommensurate charge ordering in La1-xCaxMnO3 are investigated by high resolution ...
Abstract In the present paper, we continue our investigation on the antiferromagnetic origin of the ...
Correlated quantum materials are expected to provide the foundation for the next generation of infor...
We study the origin of complex phase transitions in an electron-doped manganite, La<sub>0.2</sub>Sr<...
The science of manganites is characterised by a close interplay between charge, spin and lattice deg...
In the present paper, we continue our investigation on the antiferromagnetic origin of the charge or...