5 pags, 4 figsEffects of the Verwey transition on the (100) surface of magnetite were studied using scanning tunneling microscopy and spin polarized low-energy electron microscopy. On cooling through the transition temperature T V, the initially flat surface undergoes a rooflike distortion with a periodicity of ∼0.5 μm due to ferroelastic twinning within monoclinic domains of the low-temperature monoclinic structure. The monoclinic c axis orients in the surface plane, along the [001]c directions. At the atomic scale, the charge-ordered (√2×√2)R45 â̂̃ reconstruction of the (100) surface is unperturbed by the bulk transition, and is continuous over the twin boundaries. Time resolved low-energy electron microscopy movies reveal the structural ...
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 magnetic domain structures on the {110} plane of magnetite (Fe3O4) below the Verwey transition (...
Abstract Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120–...
Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120–125 K whe...
THESIS 5338The (100) surface of magnetite (Fe3 O4 ) has been studied using scanning tunneling micros...
Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120-125 K whe...
Magnetite (Fe3O4) shows singular electronic and magnetic properties, resulting from complex electron...
[[abstract]]We report experimental evidence for the charge-orbital ordering in magnetite below the V...
We have imaged the magnetic domains on magnetite (001) through the Verwey transition by means of spi...
The magnetic behaviour of magnetite at low temperatures is dominated by its transformation to a mono...
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...
We report on the finite size effects in the Verwey transition of stress-free magnetite Fe3O4 thin fi...
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 magnetic domain structures on the {110} plane of magnetite (Fe3O4) below the Verwey transition (...
Abstract Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120–...
Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120–125 K whe...
THESIS 5338The (100) surface of magnetite (Fe3 O4 ) has been studied using scanning tunneling micros...
Pure magnetite experiences a first-order phase transition (the Verwey transition) near 120-125 K whe...
Magnetite (Fe3O4) shows singular electronic and magnetic properties, resulting from complex electron...
[[abstract]]We report experimental evidence for the charge-orbital ordering in magnetite below the V...
We have imaged the magnetic domains on magnetite (001) through the Verwey transition by means of spi...
The magnetic behaviour of magnetite at low temperatures is dominated by its transformation to a mono...
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...
We report on the finite size effects in the Verwey transition of stress-free magnetite Fe3O4 thin fi...
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...