Transition metal oxides (TMOs) are an ideal arena for the study of electronic correlations because the s-electrons of the transition metal ions are removed and transferred to oxygen ions, and hence the strongly correlated d-electrons determine their physical properties such as electrical transport, magnetism, optical response, thermal conductivity, and superconductivity. These electron correlations prohibit the double occupancy of metal sites and induce a local entanglement of charge, spin, and orbital degrees of freedom. This gives rise to a variety of phenomena, e.g., Mott insulators, various charge/spin/orbital orderings, metal-insulator transitions, multiferroics, and superconductivity. In recent years, there has been a burst of activit...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
Finding new collective electronic states in materials is one of the fundamental goals of condensed m...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
peer reviewedComplex transition metal oxides span a wide range of crystalline structures and play ho...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
Finding new collective electronic states in materials is one of the fundamental goals of condensed m...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
This Perspective addresses the design, creation, characterization and control of synthetic quantum m...
peer reviewedComplex transition metal oxides span a wide range of crystalline structures and play ho...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
The possibility of investigating the dynamics of solids on timescales faster than the thermalization...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...
We discuss the possible mechanisms responsible for ferromagnetic ordering in transition metal oxides...