Hep-Ex explores the fascinating intersection where particle physics meets experimental reality. This field investigates how scientists build massive detectors and accelerate particles to test the fundamental laws of nature, turning abstract theories into measurable data. It is the rigorous process of searching for new particles or forces that could reshape our understanding of the universe, often requiring years of collaboration and engineering.

At Gist.Science, we ensure these discoveries become accessible to everyone. We process every new preprint in this category directly from arXiv, generating both plain-language explanations for curious readers and detailed technical summaries for specialists. Our goal is to bridge the gap between complex experimental results and public understanding without losing scientific nuance.

Below are the latest papers in Hep-Ex, freshly summarized and ready for you to explore.

⚛️ high-energy experiments

LiFE-SNS: LiF Experiment for keV-scale Sterile Neutrino Search

This paper presents the detector configuration, calibration methods, and performance characterization of the LiFE-SNS experiment, which utilizes tritium-embedded LiF crystals and magnetic microcalorimeters to achieve precision measurements of the tritium β\beta spectrum for the search of keV-scale sterile neutrinos.

Y. C. Lee, J. S. Chung, S. H. Choi, J. A. Jeon, D. H. Hwang, C. S. Kang, H. B. Kim, Ho Jong Kim, Hyeok Jun Kim, H. L. Ki (…)2026-02-06
⚛️ high-energy experiments

Sensitivity to New Physics Phenomena in Anomaly Detection: A Study of Untunable Hyperparameters

This paper systematically evaluates the sensitivity of four semi-supervised anomaly detection methods to untunable hyperparameters in the search for Beyond the Standard Model physics and proposes a robust, non-parametric permutation test for statistical assessment.

Fernando Abreu de Souza, Maura Barros, Nuno Filipe Castro, Miguel Crispim Romão, Céu Neiva, Rute Pedro2026-02-05
⚛️ high-energy experiments

Exploring the keV-scale physics potential of CUORE

This paper presents an analysis of over two tonne-years of CUORE data demonstrating that optimized selection techniques enable the experiment to effectively explore the keV-scale energy region with improved resolution and reduced background, thereby validating tonne-scale cryogenic calorimeters as versatile tools for rare event and dark matter physics across a wide energy range.

CUORE Collaboration, D. Q. Adams, C. Alduino, K. Alfonso, A. Armatol, F. T. Avignone, O. Azzolini, G. Bari, F. Bellini (…)2026-02-05
⚛️ high-energy experiments

Hydrodynamic simulations of expanded warm dense foil heated by pulsed-power

This paper presents a robust modeling framework that couples pulsed-power electrical circuit simulations with one-dimensional hydrodynamic codes to accurately design and optimize experiments for generating expanded warm dense matter in thin metallic foils confined within sapphire cells.

Luc Revello, Laurent Videau, Frédéric Zucchini, Mathurin Lagrée, Christophe Blancard, Benjamin Jodar2026-02-05
⚛️ nuclear experiments

A Second EIC Detector: Physics Case and Conceptual Design

This closeout report for LDRD 23-050 details the physics case and conceptual design for a second, complementary Electron-Ion Collider (EIC) detector, outlining its scientific potential, innovative technology requirements, and strategic role in maximizing the EIC's multi-decade research capabilities.

Jihee Kim, Cheuk-Ping Wong, Thomas Ullrich, Zhoudunmin Tu, Brian Page, Elke Aschenauer, Alexander Jentsch, Alexander Baz (…)2026-02-05