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Updated baseline design for HALHF: the hybrid, asymmetric, linear Higgs factory

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arxiv 2505.21654 v1 pith:7SGV2PTJ submitted 2025-05-27 physics.acc-ph hep-ex

Updated baseline design for HALHF: the hybrid, asymmetric, linear Higgs factory

classification physics.acc-ph hep-ex
keywords accelerationdesignhighbaselinefactoryhiggsacceleratechallenges
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Particle physicists aim to construct a electron-positron Higgs factory as the next major particle collider. However, the high associated costs motivate the development of more affordable collider designs. Plasma-wakefield acceleration is a promising technology to this end. HALHF is a proposal for a Higgs factory that utilizes beam-driven plasma-wakefield acceleration to accelerate electrons to high energy with high gradient, while using radio-frequency acceleration to accelerate positrons to a lower energy. This asymmetry sidesteps a major difficulty in plasma acceleration: that of accelerating positrons with high efficiency and quality. Since publication, several challenges were identified in the original baseline design. We summarize the updated baseline design, which addresses these challenges, and describe the parameter- and cost-optimization process used to arrive at this design.

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