We investigate atomic and electronic structures of the intriguing low-temperature phase of IrTe2 using high-resolution scanning tunneling microscopy and spectroscopy. We confirm various stripe superstructures such as ×3, ×5, and ×8. The strong vertical and lateral distortions of the lattice for the stripe structures are observed in agreement with recent calculations. The spatial modulations of electronic density of states are clearly identified as separated from the structural distortions. These structural and spectroscopic characteristics are not consistent with the charge-density wave and soliton lattice model proposed recently. Instead, we show that the Ir (Te) dimerization together with the Ir 5d charge ordering can explain these supers...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...
We report an angle-resolved photoemission spectroscopy (ARPES) study on IrTe2 which exhibits an inte...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
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 have studied local structure of IrTe2 by Ir L-3-edge extended x-ray absorption fine structure (EX...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
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 combined angle-resolved photoemission spectroscopy and low-energy electron diffraction ...
International audienceWe present a combined angle-resolved photoemission spectroscopy and low-energy...
We investigated the electronic reconstruction in IrTe2 across the $\textbf{q}_{1/5} = (1/5~0~1/5)$ ...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...
We report an angle-resolved photoemission spectroscopy (ARPES) study on IrTe2 which exhibits an inte...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
We have explored the origin of unusual first-order-type electronic and structural transitions in IrT...
Iridium di-telluride (IrTe2) belongs to the family of transition metal dichalcogenides (TMD), but it...
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 have studied local structure of IrTe2 by Ir L-3-edge extended x-ray absorption fine structure (EX...
In the transition metal dichalcogenide IrTe2, low-temperature charge-ordered phase transitions invol...
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 combined angle-resolved photoemission spectroscopy and low-energy electron diffraction ...
International audienceWe present a combined angle-resolved photoemission spectroscopy and low-energy...
We investigated the electronic reconstruction in IrTe2 across the $\textbf{q}_{1/5} = (1/5~0~1/5)$ ...
Obtaining spatially-resolved electronic structure information at the microscale is key to a complete...
We report an angle-resolved photoemission spectroscopy (ARPES) study on IrTe2 which exhibits an inte...
We report a photoemission spectroscopy study on IrTe2 which exhibits an interesting lattice distorti...