works on

From the 1 of 7 linked papers with an AI index.

activity
20242026
collaborators

7 papers

hep-ph2026

Neural Boltzmann Equations

Jonas Spinner, Jack Shergold

The dynamics of particles in the early universe are described by Boltzmann equations, which involve high-dimensional phase-space integrals. Classical approaches use quadrature inte…

hep-ph2026

The Role of Symmetries in Dark Matter Detector Design

Benjamin Lillard, Jack D. Shergold, Juri Smirnov

The paper shows how the symmetries of anisotropic materials can be used to estimate the daily modulation signal in sub‑GeV dark‑matter detectors, enabling fast screening of molecul…

hep-ph2025

A Numerical Method for the Efficient Calculation of Scattering Form Factors

Carlos Blanco, Benjamin Lillard, Jack D. Shergold

Scintillating molecular crystals have emerged as prime candidates for directional dark matter detector targets. This anisotropy makes them exquisitely sensitive due to the daily mo…

hep-ph2025

Constraining neutrino charges at beam experiments

Jack D. Shergold, Martin Spinrath

We propose a new method to constrain neutrino charges at neutrino beam experiments. Uncharged in the Standard Model, evidence for a neutrino electric charge would be a smoking gun…

hep-ph2025

Cosmic neutrino background detection in the minimally extended Standard Model

Yuber F. Perez-Gonzalez, Jack D. Shergold

We investigate the sensitivity of relic neutrino detection methods within the Standard Model, extended to include right-chiral neutrino singlets with Majorana mass terms. In partic…

hep-ph2025

Dark matter pair absorption

Martin Bauer, Javier Perez-Soler, Jack D. Shergold

We present a comprehensive analysis of the sensitivity of atomic transitions to light dark matter pair absorption. Unlike scattering, where only a fraction of the dark matter energ…