activity
20172025
most citedMQXFA Final Design Report

12 citations · 16 across the 5 of their papers we have counts for

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Showing physics.acc-phShow all

7 papers · 1 filter

physics.acc-ph2025

Test results of the LQXFA/B02 and LQXFA/B03 cryo-assemblies for the High Luminosity LHC upgrade

G. Chlachidze, G. Ambrosio, M. Anerella +13

The US High-Luminosity LHC Accelerator Upgrade Project (AUP) is responsible for delivering cryo-assemblies for the Q1/Q3 quadrupole optical components of the High Luminosity LHC up…

physics.acc-ph2024

First results of AUP Nb3Sn quadrupole horizontal tests

M. Baldini, G. Ambrosio, G. Apollinari +48

The Large Hadron Collider will soon undergo an upgrade to increase its luminosity by a factor of ~10 [1]. A crucial part of this upgrade will be replacement of the NbTi focusing ma…

physics.acc-ph20224 cited

A Strategic Approach to Advance Magnet Technology for Next Generation Colliders

G. Ambrosio, K. Amm, M. Anerella +74

Colliders are built on a foundation of superconducting magnet technology that provides strong dipole magnets to maintain the beam orbit and strong focusing magnets to enable the ex…

physics.acc-ph2022

Common Coil Dipole for High Field Magnet Design and R&D

Ramesh Gupta, Kathleen Amm, Julien Avronsart +22

The common coil geometry provides an alternate design to the conventional cosine theta dipoles. It allows a wider range of conductor and magnet technologies. It also facilitates a…

physics.acc-ph2022

White Paper on Leading-Edge technology And Feasibility-directed (LEAF) Program aimed at readiness demonstration for Energy Frontier Circular Colliders by the next decade

G. Ambrosio, G. Apollinari, M. Baldini +39

In this White Paper for the Snowmass 2021 Process, we propose the establishment of a magnet Leading-Edge technology And Feasibility-directed Program (LEAF Program) to achieve readi…

physics.acc-ph202212 cited

MQXFA Final Design Report

Giorgio Ambrosio, Kathleen Amm, Mike Anerella +29

The MQXFA Quadrupole magnets will be installed in High Luminosity LHC to form the Q1 and Q3 inner triplet optical elements in front of the interaction points 1 (ATLAS) and 5 (CMS).…