collaborators

6 papers

physics.ins-det2026

Cracking under pressure --- investigating mitigation approaches for silicon fractures on ATLAS strip tracker petals at cold temperatures

S. H. Abidi, J. -H. Arling, M. J. Basso +35

For the High-Luminosity upgrade of the Large Hadron Collider, the ATLAS experiment will replace its current Inner Detector with an all-silicon Inner Tracker (ITk), consisting of pi…

physics.acc-ph2026

SuperCond-GNN: Scalable Graph Neural Network Surrogate for Superconducting Circuit Simulations

Nandana Menon, Giorgio Vallone

This paper presents SuperCond-GNN, a graph neural network-based surrogate model for predicting the voltage distribution in high-temperature superconducting (HTS) magnets. HTS magne…

physics.acc-ph2025

MuCol Milestone Report No. 7: Consolidated Parameters

Rebecca Taylor, Antoine Chancé, Dario Augusto Giove +459

This document is comprised of a collection of consolidated parameters for the key parts of the muon collider. These consolidated parameters follow on from the October 2024 Prelimin…

physics.ins-det2025

Silicon Wafer Fracture Stress for Tracking Sensors in Particle Physics Experiments

Haider Abidi, Vitaliy Fadeyev, Tim Jones +6

For the construction of the ATLAS Inner Tracker strip detector, silicon strip sensor modules are glued directly onto carbon fibre support structures using a soft silicone gel. Duri…

physics.acc-ph2025

The 2025 Roadmaps for the US Magnet Development Program

Lance Cooley, Paolo Ferracin, Steve Gourlay +21

The US Physics community completed the Snowmass planning process in 2022, culminating in the HEPAP Particle Physics Project Prioritization Panel (P5) publishing its summary report…

physics.acc-ph2025

The Muon Collider

Carlotta Accettura, Simon Adrian, Rohit Agarwal +450

Muons offer a unique opportunity to build a compact high-energy electroweak collider at the 10 TeV scale. A Muon Collider enables direct access to the underlying simplicity of the…