1–5 Jun 2026
Paraninfo, University of Zaragoza
Europe/Madrid timezone

Modeling electronic final states in liquid xenon for light dark matter detection

1 Jun 2026, 17:10
20m
Pilar Sinués

Pilar Sinués

Oral presentation Theory & pheno Parallel Session - Theory/Phenomenology

Speaker

Theresa Backes (Chalmers University of Technology)

Description

Liquid xenon is an important target material in for the direct detection of light dark matter (DM) via electron recoils. Consequently, accurate modeling of the DM-electron interaction in this medium is crucial. In particular, a proper description of the electron final states plays a key role in modeling the electronic response of the detector. We follow a novel approach in which the final states are described as linear combinations of positive-energy eigenstates of the Schrödinger equation, combined with a DFT modeling of the liquid xenon phase. These states replace the single positive-energy eigenstate approximation commonly adopted when liquid xenon targets are treated as collections of non-interacting atoms. Our approach therefore represents a step towards a more realistic description of liquid xenon as an interacting many-body system. This talk presents preliminary results comparing the existing literature with DM-electron scattering rates obtained with our description of the final states.

Main Contribution topic Theory / Phenomenology
Secondary contribution topic Direct detection

Author

Theresa Backes (Chalmers University of Technology)

Presentation materials