most citedMagnetic anisotropy reversal driven by structural symmetry-breaking in monolayer α-RuCl3

54 citations · 217 across the 9 of their papers we have counts for

collaborators

9 papers

cond-mat.supr-con2023★ 19 cited

Constraints on the superconducting state of SrRuO from elastocaloric measurements

Grgur Palle, Clifford Hicks, Roser Valentí +6

Strontium ruthenate SrRuO is an unconventional superconductor whose pairing symmetry has not been fully clarified, despite more than two decades of intensive research. Rece…

cond-mat.str-el2023★ 42 cited

Heterogeneous Ta-dichalcogenide bilayer: heavy fermions or doped Mott physics?

Lorenzo Crippa, Hyeonhu Bae, Paul Wunderlich +5

Controlling and understanding electron correlations in quantum matter is one of the most challenging tasks in materials engineering. In the past years a plethora of new puzzling co…

cond-mat.str-el2022★ 10 cited

Detecting topological phases in the square-octagon lattice with statistical methods

Paul Wunderlich, Francesco Ferrari, Roser Valentí

Electronic systems living on Archimedean lattices such as kagome and square-octagon networks are presently being intensively discussed for the possible realization of topological i…

cond-mat.supr-con2022★ 6 cited

Hybrid s-wave superconductivity in CrB

Sananda Biswas, Andreas Kreisel, Adrian Valadkhani +5

In a metal with multiple Fermi pockets, the formation of s-wave superconductivity can be conventional due to electron-phonon coupling or unconventional due to spin fluctuations. We…

cond-mat.str-el2022★ 54 cited

Magnetic anisotropy reversal driven by structural symmetry-breaking in monolayer α-RuCl3

Bowen Yang, Yin Min Goh, Suk Hyun Sung +14

Layered α-RuCl3 is a promising material to potentially realize the long-sought Kitaev quantum spin liquid with fractionalized excitations. While evidence of this exotic state has b…

cond-mat.str-el2022★ 25 cited

Interacting topological quantum chemistry of Mott atomic limits

Martina O. Soldini, Nikita Astrakhantsev, Mikel Iraola +6

Topological quantum chemistry (TQC) is a successful framework for identifying (noninteracting) topological materials. Based on the symmetry eigenvalues of Bloch eigenstates at maxi…