activity
20242026
collaborators

6 papers

cond-mat.mtrl-sci2026

The Frequency-Dependent Spin Contribution to the Magnetoelectric Tensor of CrO: A First-Principles Study

Torsten Geirsson, Davide Sangalli, Alberto García-Cristóbal +1

The magnetoelectric (ME) effect provides a promising pathway for controlling magnetic functionalities using electric fields. While first-principles methods for the static linear ME…

cond-mat.mtrl-sci2026

Coherent Ultrafast Excitonic Oscillations in Monolayer WS

Jorge Cervantes-Villanueva, Alberto García-Cristóbal, Davide Sangalli +1

Monolayer transition metal dichalcogenides are a suitable platform for studying excitonic coherence in the light-matter coupling regime. We present an ab initio time-dependent GW-B…

cond-mat.mtrl-sci2026

Thermal conductivity and tunable thermal anisotropy of magnetic CrSBr monolayer

Marta Loletti, Alejandro Molina-Sánchez, Juan Sebastián Reparaz +2

We present first-principles calculations of the thermal conductivity, , of monolayer CrSBr, a van der Waals magnetic 2D material. We find a considerable thermal anisotrop…

cond-mat.mes-hall2026

Magnetic switching of exciton lifetime in CrSBr

Ina V. Kalitukha, Ilya A. Akimov, Mikhail O. Nestoklon +13

Exciton dynamics in layered magnetic semiconductors provide a sensitive probe of the interplay between spin order and light-matter interaction. Here, we study thin CrSBr layers usi…

cond-mat.mtrl-sci2025

Magnons in chromium trihalides from \emph{ab initio} Bethe-Salpeter equation

Ali Esquembre-Kučukalić, Khoa B. Le, Alberto García-Cristóbal +3

Chromium trihalides (CrX, with ) are layered ferromagnetic materials with rich physics and possible applications. Their structure consists of magnetic Cr atoms…

cond-mat.mtrl-sci2024

Unveiling exciton formation: exploring the early stages in time, energy and momentum domain

Valentina Gosetti, Jorge Cervantes-Villanueva, Selene Mor +9

Resolving the early-stage dynamics of exciton formation following non-resonant photoexcitation in time, energy, and momentum is quite challenging due to their inherently fast times…