Cherenkov and scintillation light were separated in BGO and BSO crystals with SiPMs, yielding up to 150 photoelectrons per GeV from Cherenkov light in electromagnetic showers.
Abbrescia, et al., (2025)
10 Pith papers cite this work. Polarity classification is still indexing.
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The report describes the iterative evolution of integrated detector concepts for FCC-ee through human-AI dialogue, with emphasis on calibration, stability, and operational simplicity over a long physics program.
FCC-ee projections indicate at least 10 times better precision on the H to tau tau cross-section than the LHC through ZH and VBF channels plus improved tau reconstruction methods.
Silicon tracker PID suppresses backgrounds well for low-momentum b-tagging but requires drift-chamber cluster counting for high-momentum s-jet tagging, with 30 ps timing needed to improve rare b to s decay contamination by an order of magnitude over kinematics alone.
The IDEA detector concept for FCC-ee integrates MAPS-based vertexing, a lightweight drift chamber, dual-readout crystal and fibre calorimeters, an HTS solenoid, and muon chambers to address the physics requirements of the collider.
Graph neural network tagging of semi-visible jets from Higgs portal dark sectors at FCC-ee can constrain exotic Higgs branching ratios to dark quarks at the per-mille level across varied invisible fractions.
With 6×10^{12} Z bosons at FCC-ee, invisible B-meson branching fractions above 7.6×10^{-9} could be excluded at 90% CL using rectangular cuts and a multiclass BDT on simulated signal and background.
Monte Carlo simulation of Thrust, C-parameter, and inclusive hadron spectra at 91-365 GeV with alpha_s extraction from NNLO fits and background distortion studies.
citing papers explorer
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Cherenkov and scintillation light separation in BGO and BSO crystals coupled to SiPMs for dual-readout electromagnetic calorimetry at future colliders
Cherenkov and scintillation light were separated in BGO and BSO crystals with SiPMs, yielding up to 150 photoelectrons per GeV from Cherenkov light in electromagnetic showers.
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Considerations for an Integrated Detector Design at FCC-ee: A Human-AI Exploration
The report describes the iterative evolution of integrated detector concepts for FCC-ee through human-AI dialogue, with emphasis on calibration, stability, and operational simplicity over a long physics program.
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Projections of H$\to\tau\tau$ cross-section at FCC-ee
FCC-ee projections indicate at least 10 times better precision on the H to tau tau cross-section than the LHC through ZH and VBF channels plus improved tau reconstruction methods.
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Flavor-physics benchmarks for tracker-based particle identification at the FCC-ee
Silicon tracker PID suppresses backgrounds well for low-momentum b-tagging but requires drift-chamber cluster counting for high-momentum s-jet tagging, with 30 ps timing needed to improve rare b to s decay contamination by an order of magnitude over kinematics alone.
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The IDEA detector concept for FCC-ee
The IDEA detector concept for FCC-ee integrates MAPS-based vertexing, a lightweight drift chamber, dual-readout crystal and fibre calorimeters, an HTS solenoid, and muon chambers to address the physics requirements of the collider.
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Probing the Higgs Portal to a Strongly-Interacting Dark Sector at the FCC-ee
Graph neural network tagging of semi-visible jets from Higgs portal dark sectors at FCC-ee can constrain exotic Higgs branching ratios to dark quarks at the per-mille level across varied invisible fractions.
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Prospects of searches for invisible $B$-meson decays at FCC-ee
With 6×10^{12} Z bosons at FCC-ee, invisible B-meson branching fractions above 7.6×10^{-9} could be excluded at 90% CL using rectangular cuts and a multiclass BDT on simulated signal and background.
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Event shapes and Inclusive Hadron Spectra at FCC-ee energies
Monte Carlo simulation of Thrust, C-parameter, and inclusive hadron spectra at 91-365 GeV with alpha_s extraction from NNLO fits and background distortion studies.
- Search for the production of dark Higgs in the framework of Mono-Z$^{\prime}$ portal at the FCC-ee simulated electron-positron collisions at $\sqrt{s} = 240$ GeV
- Precision Measurements of Higgs Hadronic Decay Modes at the FCC-ee