activity
20242026
collaborators

8 papers

cond-mat.str-el2026

Strain-tunable charge localization coupled to complex magnetic orders in EuAl

M. Baumgartner, Xunyang Hong, Tianren Wang +19

Charge localization is particularly interesting when coupled to antiferromagnetic spin structures. Coupled spin-charge orders are well established in elemental chromium and correla…

cond-mat.supr-con2026

Correlated charge order intertwined with time-reversal symmetry-breaking nodal superconductivity in the dual flat band kagome superconductor CeRuSi

O. Gerguri, P. Krà l, M. Spitaler +19

Kagome materials provide a powerful platform for exploring how flat electronic bands promote symmetry-breaking quantum states, yet studies have so far focused mainly on kagome-deri…

cond-mat.supr-con2026

The stripe state at 1/8 Ba doping hosts optimal superconductivity in La-214 cuprates under low in-plane stress

V. Sazgari, S. S. Islam, M. Lamotte +20

The cuprate system LaBaCuO (LBCO) exhibits a pronounced sensitivity to in-plane uniaxial stress, particularly near the 1/8 doping anomaly, where stripe order st…

cond-mat.supr-con2026

Divergent Pressure Response of Superconductivity in ScMTe ( = Fe, Ru and Ir)

J. N. Graham, S. S. Islam, K. Yuchi +7

Identifying and understanding non-BCS superconductivity remains a central challenge in condensed-matter physics. Here we focus on the ScMTe family (M =d-electron metal)…

cond-mat.supr-con2025

Distinct Uniaxial Stress and Pressure Fingerprint of Superconductivity in the 3D Kagome Lattice Compound CeRu2

O. Gerguri, D. Das, V. Sazgari +16

The exploration of tunable superconductivity in strongly correlated electron systems is a central pursuit in condensed matter physics, with implications for both fundamental unders…

cond-mat.supr-con2025

Discovery of High-Temperature Charge Order and Time-Reversal Symmetry-Breaking in the Kagome Superconductor YRu3Si2

P. Krà l, J. N. Graham, V. Sazgari +21

The identification of high-temperature unconventional charge order and superconductivity in kagome quantum materials is pivotal for deepening our understanding of geometrically fru…