activity
20142023
most citedRevealing the role of electrons and phonons in the ultrafast recovery of charge density wave correlations in 1-TiSe

76 citations · 250 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci2023

Access to the full 3D Brillouin zone with time resolution, using a new tool for pump-probe ARPES

Paulina Majchrzak, Yu Zhang, Andrii Kuibarov +7

Here we report the first time- and angle-resolved photoemission spectroscopy (TR-ARPES) with the new Fermiologics "FeSuMa" analyzer. The new experimental setup has been commissione…

cond-mat.str-el202325 cited

Exploring the Charge Density Wave phase of 1-TaSe: Mott or Charge-transfer Gap?

C. J. Sayers, G. Cerullo, Y. Zhang +8

1-TaSe is widely believed to host a Mott metal-insulator transition in the charge density wave (CDW) phase according to the spectroscopic observation of a band gap that exte…

cond-mat.str-el201676 cited

Revealing the role of electrons and phonons in the ultrafast recovery of charge density wave correlations in 1-TiSe

C. Monney, M. Puppin, C. W. Nicholson +8

Using time- and angle-resolved photoemission spectroscopy with selective near- and mid-infrared photon excitations, we investigate the femtosecond dynamics of the charge density wa…

cond-mat.mes-hall201651 cited

Spin and Valley Control of Free Carriers in Single-Layer WS

Søren Ulstrup, Antonija Grubišić Čabo, Deepnarayan Biswas +11

The semiconducting single-layer transition metal dichalcogenides have been identified as ideal materials for accessing and manipulating spin- and valley-quantum numbers due to a se…

cond-mat.mtrl-sci201666 cited

Enhanced electron-phonon coupling in graphene with periodically distorted lattice

E. Pomarico, M. Mitrano, H. Bromberger +11

Electron-phonon coupling directly determines the stability of cooperative order in solids, including superconductivity, charge and spin density waves. Therefore, the ability to enh…

cond-mat.mes-hall201432 cited

Phonon-pump XUV-photoemission-probe in graphene: evidence for non-adiabatic heating of Dirac carriers by lattice deformation

Isabella Gierz, Matteo Mitrano, Hubertus Bromberger +11

We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in-plane E1u lattice vibration at 6.3um. Using time- and angle-resolved photoemiss…