Obtaining spatially-resolved electronic structure information at the microscale is key to a complete understanding of phase transitions and domain separation in the solid-state. Here, micro- and nanoscale angle-resolved photoemission spectroscopy reveals the electronic structure of domains in the striped phase of IrTe2
We present a time-resolved angle-resolved photoelectron spectroscopy study of IrTe2, which undergoe...
The electronic structure of MoTe2 undergoing a monoclinic-orthorhombic transition around 250K has be...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invo...
We investigate atomic and electronic structures of the intriguing low-temperature phase of IrTe2 usi...
We investigated the electronic reconstruction in IrTe2 across the $\textbf{q}_{1/5} = (1/5~0~1/5)$ ...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
We present a combined angle-resolved photoemission spectroscopy and low-energy electron diffraction ...
International audienceWe present a combined angle-resolved photoemission spectroscopy and low-energy...
We present a combined angle-resolved photoemission spectroscopy and low-energy electron diffraction...
Tuning dimensionality in van der Waals materials with finite interlayer coupling has introduced vari...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
We present a time-resolved angle-resolved photoelectron spectroscopy study of IrTe2, which undergoe...
The electronic structure of MoTe2 undergoing a monoclinic-orthorhombic transition around 250K has be...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invo...
We investigate atomic and electronic structures of the intriguing low-temperature phase of IrTe2 usi...
We investigated the electronic reconstruction in IrTe2 across the $\textbf{q}_{1/5} = (1/5~0~1/5)$ ...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
We present a combined angle-resolved photoemission spectroscopy and low-energy electron diffraction ...
International audienceWe present a combined angle-resolved photoemission spectroscopy and low-energy...
We present a combined angle-resolved photoemission spectroscopy and low-energy electron diffraction...
Tuning dimensionality in van der Waals materials with finite interlayer coupling has introduced vari...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
We present a time-resolved angle-resolved photoelectron spectroscopy study of IrTe2, which undergoe...
The electronic structure of MoTe2 undergoing a monoclinic-orthorhombic transition around 250K has be...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...