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

Designing the Next Generation of Materials for Rare-Event Searches: High-Strength, Ultra-Pure Copper Alloys

Not scheduled
15m
Josefa Amar y Borbón

Josefa Amar y Borbón

Poster Instrumentation Poster session / Wine and Cheese

Speaker

Patrick Knights (University of Birmingham)

Description

The quest to directly detect dark matter and unravel the nature of neutrinos has driven the development of experimental techniques with unprecedented sensitivity, placing extreme demands on detector-material-induced backgrounds. As a result, the choice of construction materials, particularly those in direct contact with the target medium, has become a critical limiting factor. Electroformed copper, thanks to its exceptional radiopurity, is the material of choice for low-background experiments. However, its limited mechanical strength and ductility restrict its application in large-scale, high-pressure, or load-bearing components.

A materials design perspective to address this challenge is proposed. The recent advances in the synthesis and design optimisation of high-strength, radiopure copper-based alloys, specifically Cu-Cr and Cu-Cr-Ti, using computational thermodynamics will be presented. By combining electrodeposition techniques with CALPHAD-based modelling rapid predictive design of alloy compositions and thermal processing is enabled, allowing us to navigate the trade-offs between radiopurity, mechanical strength, and manufacturability. The physics impact of such materials breakthroughs will be illustrated through case studies of next-generation experiments.

Main Contribution topic Instrumentation for Dark Matter searches
Secondary contribution topic Direct detection

Authors

Dimitra Spathara (University of Birmingham, School of Physics and Astronomy, Birmingham, B15 2TT, UK) Prof. Konstantinos Nikolopoulos (University of Birmingham, School of Physics and Astronomy, Birmingham, B15 2TT, UK & University of Hamburg, Institute for Experimental Physics, Hamburg, 22761, Germany) Patrick Knights (University of Birmingham)

Presentation materials