We present a combined angle-resolved photoemission spectroscopy and low-energy electron diffraction (LEED) study of the prominent transition metal dichalcogenide IrTe2 upon potassium (K) deposition on its surface. Pristine IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are characterized by the formation of stripes of Ir dimers of different periodicities. Supported by density functional theory calculations, we first show that the K atoms dope the topmost IrTe2 layer with electrons, therefore strongly decreasing the work function and shifting only the electronic surface states towards higher binding energy. We then follow the evolution of its electronic structure as a function of temperature across th...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...
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...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invo...
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...
We present a time-resolved angle-resolved photoelectron spectroscopy study of IrTe2, which undergoe...
We investigate atomic and electronic structures of the intriguing low-temperature phase of IrTe2 usi...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
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...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...
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...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invo...
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...
We present a time-resolved angle-resolved photoelectron spectroscopy study of IrTe2, which undergoe...
We investigate atomic and electronic structures of the intriguing low-temperature phase of IrTe2 usi...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
IrTe2 undergoes a series of charge-ordered phase transitions below room temperature that are charact...
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...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...