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A C++ program for estimating detector sensitivities to long-lived particles: Displaced Decay Counter

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arxiv 2308.07371 v3 pith:7YUKVSQL submitted 2023-08-14 hep-ph hep-ex

A C++ program for estimating detector sensitivities to long-lived particles: Displaced Decay Counter

classification hep-ph hep-ex
keywords modelstoolbeencollidercounterdecaydetectordisplaced
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A series of far-detector programs have been proposed for operation at various interaction points of the Large Hadron Collider during the upcoming runs. Investigating the potential and complementarity of these experiments for new-physics searches goes through the estimation of their sensitivity to specific long-lived particle models. Here, we present an integrated numerical tool written in the C++ language and called Displaced Decay Counter, which we have created to this end and which can be used in association with MadGraph5, Pythia8, or any other state-of-the-art Monte-Carlo collider simulation tool. Several far-detector models have been implemented within the program, accounting for the geometry and integrated luminosity of projected detectors. Additional or more accurate designs can be easily constructed through a dedicated interface. The functionality of this tool is exemplified through the discussion of three benchmark scenarios, which we consider for the validation of the implemented detector models.

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Cited by 2 Pith papers

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  1. Reheating the FCC: Probing Early Matter Domination with Long-Lived Particles

    hep-ph 2026-07 conditional novelty 5.0

    FCC-hh displaced-vertex searches could probe Higgs-portal scalars whose decays ended an early matter-dominated era at temperatures from ~1 GeV to the electroweak scale.

  2. Can LLP detectors probe the reheating temperature? A case study of vector dark matter

    hep-ph 2026-04 unverdicted novelty 5.0

    In a vector dark matter extension of the Higgs portal, far detectors at colliders can probe otherwise inaccessible parameter space and set novel bounds on the reheating temperature.