Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step towards controlling material's properties. Since the proposal of charge-order-induced MIT in magnetite Fe3O4 in 1939 by Verwey, the nature of the charge order and its role in the transition have remained elusive-a longstanding challenge in the studies of complex oxides. Recently, a trimeron order was discovered in the low-temperature monoclinic structure of Fe3O4; however, the expected transition entropy change in forming trimeron at the Verwey transition is greater than the observed value, which arises a reexamination of the ground state in the high-temperature phase. Here we use electron diffraction to unveil that a nematic charge order on pa...
The Verwey transition in magnetite (Fe3O4 ) is the prototypical metal-insulator transition and has e...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
By combining ab initio results for the electronic structure and phonon spectrum with the group theo...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
The Verwey transition in magnetite (Fe3O4 ) is the prototypical metal-insulator transition and has e...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
Understanding the driving mechanisms behind metal-insulator transitions (MITs) is a critical step to...
By combining ab initio results for the electronic structure and phonon spectrum with the group theo...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite Fe3O4 has fascinated mankind for millennia. As th...
The Verwey transition in magnetite (Fe3O4 ) is the prototypical metal-insulator transition and has e...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...
As the oldest known magnetic material, magnetite (Fe3O4) has fascinated mankind for millennia. As th...