activity
20222024
most citedFlat band separation and robust spin-Berry curvature in bilayer kagome metals

64 citations · 134 across the 8 of their papers we have counts for

collaborators

8 papers

cond-mat.str-el202417 cited

Signatures of a surface spin-orbital chiral metal

Federico Mazzola, Wojciech Brzezicki, Maria Teresa Mercaldo +20

The relation between crystal symmetries, electron correlations, and electronic structure steers the formation of a large array of unconventional phases of matter, including magneto…

cond-mat.mtrl-sci20231 cited

Visualising emergent phenomena at oxide interfaces

Michael Oberaigner, Manuel Ederer, Sandeep Kumar Chaluvadi +5

Knowledge of atomic-level details of structure, chemistry, and electronic states is paramount for a comprehensive understanding of emergent properties at oxide interfaces. We utili…

cond-mat.str-el2023

Observation of termination-dependent topological connectivity in a magnetic Weyl kagome-lattice

Federico Mazzola, Stefan Enzner, Philipp Eck +20

Engineering surfaces and interfaces of materials promises great potential in the field of heterostructures and quantum matter designer, with the opportunity of driving new many-bod…

cond-mat.str-el20234 cited

The electronic structure of intertwined kagome, honeycomb, and triangular sublattices of the intermetallics MCoAl

Chiara Bigi, Sahar Pakdel, Michał J. Winiarski +10

Intermetallics are an important playground to stabilize a large variety of physical phenomena, arising from their complex crystal structure. The ease of their chemical tuneabilty m…

cond-mat.str-el202364 cited

Flat band separation and robust spin-Berry curvature in bilayer kagome metals

Domenico Di Sante, Chiara Bigi, Philipp Eck +16

Kagome materials have emerged as a setting for emergent electronic phenomena that encompass different aspects of symmetry and topology. It is debated whether the XVSn kagom…

cond-mat.mtrl-sci2023

Unveiling the electronic structure of pseudo-tetragonal WO thin films

F. Mazzola, H. Hassani, D. Amoroso +11

WO is a binary 5d compound which has attracted remarkable attention due to the vast array of structural transitions that it undergoes in its bulk form. In the bulk, a wide rang…