collaborators

5 papers

cond-mat.mtrl-sci2026

Defect-induced multiferroicity in bulk solid solutions of WSe and WTe

H. Rojas-Páez, G. Villabón-Linares, J. Pazos +5

Transition metal dichalcogenides provide a versatile platform for tunable ferroic phenomena at the atomic scale owing to their reduced dimensionality. Here we investigate the struc…

cond-mat.mtrl-sci2026

Lattice dynamics of the charge density wave compounds TaTe and NbTe and their evolution across solid solutions

D. Silvera-Vega, G. Cardenas-Chirivi, J. A. Galvis +2

Understanding lattice dynamics is central to elucidating the microscopic origin of charge density waves (CDWs), particularly in materials where electron-phonon coupling can play a…

cond-mat.supr-con2026

Bridging atomic and mesoscopic length scales with Replica Scanning Tunneling Microscopy: Visualizing the atomic lattice of UTe and the atomic scale superconducting gap modulations of FeSe close to micron length scales

Miguel Águeda Velasco, Miguel Águeda Velasco, Jose D. Bermúdez-Pérez +21

Scanning Tunneling Microscopy is a cornerstone technique for visualizing the electronic density of states with atomic resolution (typically below 0.1 nm). While the field of view o…

cond-mat.supr-con2026

Universality of linear in temperature and linear in field Planckian scattering rate in high temperature cuprate superconductors

K. Remund, K. V. Nguyen, P. -H. Chou +4

One of the long standing puzzles in strongly correlated materials is the microscopic origin of the quantum critical Planckian strange metal phase with universal linear in temperatu…

cond-mat.mtrl-sci2025

Fermi Surface Reconstruction and Anisotropic Linear Magnetoresistance in the Charge Density Wave Topological Semimetal TaTe4

D. Silvera-Vega, J. Rojas-Castillo, E. Herrera-Vasco +7

Understanding the interplay between topology and correlated electron states is central to the study of quantum materials. TaTe is a quasi-one-dimensional charge density wave (C…