activity
20242026
collaborators

7 papers

hep-ph2026

Hadron Structure from the Hierarchy of Quantum Correlations in Deep-Inelastic Scattering

Henry Bloss, TJ Hobbs, Navin McGinnis

We show that the hierarchy of quantum correlations produced in deep-inelastic scattering (DIS) can serve as a novel probe of the proton's nonperturbative structure. Specifically, w…

hep-ph2025

Reusable theory representations for colliders: a demonstrator SMEFT foundation model

Supratim Das Bakshi, T. J. Hobbs, Brandon Kriesten

We develop a demonstrator foundation model for collider-scale explorations of the Standard Model Effective Field Theory (SMEFT), constructed from contrastive representations of the…

hep-ph2025

Decoding the proton's gluonic density with lattice QCD-informed machine learning

Brandon Kriesten, Alex NieMiera, William Good +2

We present a first machine learning-based decoding of the gluonic structure of the proton from lattice QCD using a variational autoencoder inverse mapper (VAIM). Harnessing the pow…

hep-ph2025

MOSAIC: Magnonic Observations of Spin-dependent Axion-like InteraCtions

Clarence Chang, T. J. Hobbs, Dafei Jin +6

We introduce an array-scalable, magnon-based detector (MOSAIC) to search for the spin-dependent interactions of electron-coupled axion dark matter. These axions can excite single m…

hep-ph2025

Quantum entropy as a harbinger of factorizability

Henry Bloss, Brandon Kriesten, T. J. Hobbs

Deeply inelastic scattering (DIS) is a powerful probe for investigating the QCD structure of hadronic matter and testing the standard model (SM). DIS can be described through QCD f…

hep-ph2024

Anomalous electroweak physics unraveled via evidential deep learning

Brandon Kriesten, T. J. Hobbs

The growth in beyond standard model (BSM) models and parametrizations has placed strong emphasis on systematically intercomparing within the range of possible models with controlle…