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MAIA: A new detector concept for a 10 TeV muon collider

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arxiv 2502.00181 v2 pith:E5RARBBC submitted 2025-01-31 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords detectormuonreconstructionmaiaconceptefficienciesparticleperformance
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Muon colliders offer a compelling opportunity to explore the TeV scale and conduct precision tests of the Standard Model, all within a relatively compact geographical footprint. This paper introduces a new detector concept, MAIA (Muon Accelerator Instrumented Apparatus), optimized for $\sqrt{s}=10$ TeV $\mu^+ \mu^-$ collisions. The detector features an all-silicon tracker immersed in a 5T solenoid field. High-granularity silicon-tungsten and iron-scintillator calorimeters surrounding the solenoid capture high-energy electronic and hadronic showers, respectively, and support particle-flow reconstruction. The outermost subsystem comprises an air-gap muon spectrometer, which contributes to muon identification. The performance of the MAIA detector is evaluated in terms of differential particle reconstruction efficiencies and resolutions. Beam-induced background and incoherent pair production simulations are overlaid to single particle gun samples to assess detector reconstruction capabilities under realistic experimental conditions. Even in the presence of backgrounds, reconstruction efficiencies exceed approximately 95\% for energetic tracks, photons, and charged pions in the central region of the detector. This paper outlines promising avenues for future work, including forward region optimization, opportunities for enhanced flavor tagging and boosted object reconstruction, and technological developments needed to achieve the desired detector performance.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Neutrino Fluxes at a Muon Collider

    hep-ph 2026-08 conditional novelty 7.0 of 10

    The neutrino flux around a 10 TeV muon collider is about 120 times higher than earlier estimates, with non-negligible additional sources from showers, rock interactions, and collisions.

  2. The muon collider: expected physics, technological solutions, and the prospect of a 21 km ring at the UNK site

    hep-ph 2026-07 conditional novelty 4.0 of 10

    A muon collider in the existing 21 km UNK tunnel could reach 10–13 TeV with conventional magnets and 13–21 TeV with HTS dipoles, around or above the IMCC 10 TeV reference.

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