collaborators

8 papers

cond-mat.supr-con2026

Momentum Structure of Superconductivity and Sublattice Effects from Quasiparticle Interference in CsVSb

Aaron G. Greenberg, Xinze Yang, Junze Deng +11

The paper uses sub‑Kelvin scanning tunneling microscopy and quasiparticle interference analysis to map the superconducting gap of the kagome metal CsV₃Sb₅, finding an isotropic gap…

cond-mat.str-el2026

Symmetry-Selective Stabilization of Charge-Density Wave in ScVSn

A. Korshunov, C. -Y. Lim, J. Corral-Sertal +10

Charge-density-wave (CDW) order in kagome metals is highly sensitive to external tuning parameters such as chemical substitution and hydrostatic pressure, which generally suppress…

cond-mat.mtrl-sci2026

Revealing magnetism in the distorted kagome TiBi ( = Nd, Sm, Gd) via ARPES and XMCD

C. Lim, F. Ballester, A. Kar +19

Kagome materials are known for hosting emergent quantum phenomena driven by the interaction between different lattice, charge and spin orders. Here, we present a detailed angle res…

cond-mat.str-el2025

Flat band driven itinerant magnetism in the Co-pnictides CaCoAs and LaCoP

D. Subires, M. García-Díez, A. Kar +12

Flat bands can induce strong electron correlation effects that help stabilize both magnetic and superconducting states. Here, we carry out angle-resolved photoemission spectroscopy…

cond-mat.str-el2025

Unravelling disorder in kagome YbCoGe

A. Korshunov, C. A. Fuller, C. -Y. Lim +7

The presence of phonon instabilities that leads to the formation of charge modulated states in kagome metals has allowed their classification based on the atomic displacements. Her…

cond-mat.str-el2025

FeGe as a building block for the kagome 1:1, 1:6:6, and 1:3:5 families: hidden d-orbital decoupling of flat band sectors, effective models and interaction Hamiltonians

Yi Jiang, Haoyu Hu, Dumitru Călugăru +5

The electronic structure and interactions of kagome materials, such as the 1:1 (FeGe) and 1:6:6 (MgFe6Ge6) classes, are complicated and involve many orbitals and bands around the F…