From the 1 of 10 linked papers with an AI index.
10 papers
Higgs Couplings at a Future Wakefield Collider
Katherine Fraser, Simon Knapen, Kevin Langhoff +1
We explore the potential of multiple possible future 10 TeV wakefield colliders to measure electroweak couplings of the Higgs boson. We find that the beam-beam interactions are not…
Bounds on axion-like particles from fully merged photons at the LHC
Simon Knapen
The paper demonstrates that for axion-like particles with masses between 0.1 GeV and 6 GeV, the most stringent existing limits arise from very high‑energy aγ production at the LHC,…
Dark Matter Detection Using Phonon Sensing in Amorphous Materials
Itay M. Bloch, Simon Knapen, Xinran Li +2
We present a concept for a tabletop-scale detector with an amorphous target designed to search for dark matter absorption into phonon excitations. In crystalline materials, absorpt…
Searches for electroweak states at future plasma wakefield colliders
So Chigusa, Simon Knapen, Toby Opferkuch +3
We quantify the discovery potential of future multi-TeV plasma wakefield colliders for new electroweak multiplets. We include beam-beam effects through realistic luminosity spectra…
Technical design report for the CODEX- demonstrator
b collaboration, Giulio Aielli, Juliette Alimena +56
The CODEX- apparatus is a demonstrator for the proposed future CODEX-b experiment, a long-lived-particle detector foreseen for operation at IP8 during HL-LHC data-taking. The d…
Spin-Dependent Scattering of Sub-GeV Dark Matter: Models and Constraints
Stefania Gori, Simon Knapen, Tongyan Lin +2
We calculate the scattering rate of sub-GeV dark matter in solid-state targets for spin-dependent dark matter -- nucleon interactions. For dark matter particles with mass below 100…