activity
20242026
collaborators

7 papers

cond-mat.mtrl-sci2026

Spin point group symmetry and classification of non-relativistic spin splitting in non-collinear magnetic structures: Identification of high-order spin splitting types (l=5,7, and 9)

Luis Elcoro, Jesus Etxebarria, J. Manuel Perez-Mato +1

A comprehensive study of the possible types of non-relativistic spin splitting of electronic bands in coplanar and non-coplanar magnetic structures is presented on the basis of spi…

cond-mat.mtrl-sci2026

Automatic calculation of symmetry-adapted tensors under spin-group symmetry. STENSOR, a new tool of the Bilbao Crystallographic Server

Luis Elcoro, Jesus Etxebarria, J. Manuel Perez-Mato +1

We present STENSOR, a new computational tool integrated into the Bilbao Crystallographic Server, designed for the automatic calculation of symmetry-adapted tensors under spin group…

cond-mat.mtrl-sci2025

Crystal tensor properties of magnetic materials with and without spin-orbit coupling. Application of spin point groups as approximate symmetries

Jesus Etxebarria, J. Manuel Perez-Mato, Emre S. Tasci +1

Spin space groups, formed by operations where the rotation of the spins is independent of the accompanying operation acting on the crystal structure, are appropriate groups to desc…

cond-mat.mtrl-sci2025

Revisiting the Abundance of Topological Materials

Hossein Mirhosseini, Luis Elcoro, Andreas Knüpfer +1

The classification of topological materials is revisited using advanced computational workflows that integrate hybrid density functional theory calculations with exact Hartree-Fock…

cond-mat.mes-hall2025

Stable Real-Space Invariants and Topology Beyond Symmetry Indicators

Yoonseok Hwang, Vaibhav Gupta, Frank Schindler +4

We introduce stable real-space invariants (SRSIs), topological invariants defined from adiabatic deformations between Wannier states, generalizing previously discovered local and c…

cond-mat.mtrl-sci2024

2D Theoretically Twistable Material Database

Yi Jiang, Urko Petralanda, Grigorii Skorupskii +22

The study of twisted two-dimensional (2D) materials, where twisting layers create moiré superlattices, has opened new opportunities for investigating topological phases and strong…