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International Large Detector: Interim Design Report
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The ILD detector is proposed for an electron-positron collider with collision centre-of-mass energies from 90~\GeV~to about 1~\TeV. It has been developed over the last 10 years by an international team of scientists with the goal to design and eventually propose a fully integrated detector, primarily for the International Linear Collider, ILC. In this report the fundamental ideas and concepts behind the ILD detector are discussed and the technologies needed for the realisation of the detector are reviewed. The document starts with a short review of the science goals of the ILC, and how the goals can be achieved today with the detector technologies at hand. After a discussion of the ILC and the environment in which the experiment will take place, the detector is described in more detail, including the status of the development of the technologies foreseen for each subdetector. The integration of the different sub-systems into an integrated detector is discussed, as is the interface between the detector and the collider. This is followed by a concise summary of the benchmarking which has been performed in order to find an optimal balance between performance and cost. To the end the costing methodology used by ILD is presented, and an updated cost estimate for the detector is presented. The report closes with a summary of the current status and of planned future actions.
Forward citations
Cited by 7 Pith papers
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The 95 GeV Excess in Models with Two Higgs Doublets plus One Singlet: Model Distinction via Four-top Final States and Triple Higgs Couplings
Using the 95 GeV excess benchmarks, four-top production at HL-LHC and di-Higgs production at ILC500 can distinguish the N2HDM from the 2HDMS for pseudoscalar-mixing angles beyond a computed 'α4 limit'.
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Tunable Light Scattering in Cast Organic Scintillators via BaSO$_4$ Nanoparticle Doping: A Short Summary
BaSO4 doping of EJ-290 cast scintillators reduces scattering length from 6.05 cm (1 wt%) to 0.83 cm (5 wt%) with only ~15% light-yield loss, enabling engineered photon transport for fiber-readout detectors.
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CaloTrilogy: Toward a Breakthrough in One-Step, End-to-End, Physics-Guided Shower Generation for Modern Calorimeters
Presents CaloTrilogy, a unified one-step generative model for high-granularity calorimeter showers that combines velocity field integration, learned priors, and physics losses to match SOTA quality.
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Custodial Naturalness
Custodial Naturalness uses classical scale invariance plus a custodial SO(6) symmetry to make the Higgs a naturally light pseudo-Goldstone boson, with testable new particle predictions.
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Comparative study and optimization of SDHCAL hadronic energy reconstruction methods
In the ILD SDHCAL simulation, split and polynomial energy-reconstruction formulas beat linear and quadratic fits on linearity and low-energy resolution, while PFA confusion — not calorimeter response — dominates dijet...
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Jet flavor tagging with Particle Transformer for Higgs factories
Particle Transformer jet flavor tagging on ILD full and fast simulation cuts b/c background acceptance by a factor of about 5–10 versus LCFIPlus, with usable strange and quark–antiquark separation when PID is included.
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The ILD Detector: A Versatile Detector for an Electron-Positron Collider at Energies up to 1 TeV
The ILD concept paper presents a particle-flow-optimized detector design, its performance requirements, technology options, and readiness for both linear and circular electron-positron colliders up to 1 TeV.
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