Nucl-Ex represents the dynamic frontier where scientists probe the fundamental building blocks of matter through high-energy experiments. By smashing particles together at incredible speeds or observing rare cosmic events, researchers uncover the forces that govern our universe and test the limits of our current understanding of physics.

At Gist.Science, we ensure these breakthroughs reach a broader audience by processing every new preprint in this field directly from arXiv. For each study, we provide both a clear, plain-language explanation of the core discoveries and a detailed technical summary for those seeking deeper insights. Below are the latest papers in nuclear experiment research, curated to help you stay informed on the latest developments from the lab.

⚛️ nuclear experiments

Search for Light Dark Sectors Using Electron-Photon Collisions

This paper proposes a novel experimental search for dark photons at electron accelerators using inverse Compton scattering (γeAe\gamma e^- \rightarrow A' e^-) with laser photons and a 3 GeV electron beam, demonstrating that this setup can probe unexplored regions of dark sector parameter space through photon counting techniques.

L. Angel, G. Casse, G. Gambini, A. S. de Jesus, V. Kozhuharov, A. Machado, F. S. Queiroz, E. Segreto, J. Smirnov2026-03-03
⚛️ nuclear experiments

First measurement of ϕϕ meson production in 30 GeV proton-nucleus reactions via di-electron decay at J-PARC

This paper reports the first measurement of ϕ\phi meson production via the di-electron decay channel in 30 GeV proton-carbon and proton-copper interactions at J-PARC, yielding total cross sections of 2.0 mb and 10.3 mb respectively and establishing a mass-number dependence parameter α\alpha of 0.99 that aligns with existing proton-proton data.

PARC E16 collaboration, Satomi Nakasuga, Yuhei Morino, Kazuya Aoki, Yoki Aramaki, Daichi Arimizu, Sakiko Ashikaga, Wen-C (…)2026-03-03
⚛️ nuclear experiments

Probing a Fifth Force in Muonic Atoms through Lamb Shifts and Hyperfine Structure

Motivated by the ATOMKI anomalies, this study employs the Gaussian Expansion Method to predict X17-induced Lamb shifts and hyperfine splittings in muonic atoms up to Z=15, identifying specific isotopes like muonic deuterium, helium ions, and silicon-29 as promising probes to distinguish between vector and pseudoscalar fifth-force mediators.

Xiaoxuan Lin, Qian Wu, Wei Kou, Xurong Chen2026-03-03
⚛️ nuclear experiments

From closed shells to open shells: Coupled-cluster calculations of atomic nuclei

This study provides a comprehensive comparison of coupled-cluster formulations based on symmetry-broken reference states and equation-of-motion techniques, demonstrating that both approaches yield consistent descriptions of bulk nuclear properties across calcium and nickel isotopic chains when using chiral effective field theory interactions.

F. Marino, F. Bonaiti, P. Demol, S. Bacca, T. Duguet, G. Hagen, G. R. Jansen, T. Papenbrock, A. Tichai2026-03-02
⚛️ nuclear experiments

SS factor of 13^{13}C(αα,nn)16^{16}O at low energies in cluster effective field theory

This paper employs cluster effective field theory, fitted to recent experimental data from the LUNA and JUNA collaborations, to calculate the SS factor of the 13^{13}C(α\alpha,nn)16^{16}O reaction at low energies and extrapolate it to the Gamow peak relevant for low-mass AGB stars, identifying the near-breakup threshold 1/2+1/2^+ state of 17^{17}O as the primary source of uncertainty.

Shung-Ichi Ando2026-03-02
⚛️ nuclear experiments

Global ΛΛ polarization in heavy-ion collisions at high baryon density

Using the three-fluid dynamics model, this study calculates global Λ\Lambda polarization in Au+Au collisions at high baryon densities (3–9 GeV), successfully reproducing STAR data at 3 GeV and predicting a broad maximum in polarization around 3–3.9 GeV while analyzing the specific contributions of thermal vorticity, meson fields, thermal shear, and the spin-Hall effect.

Yu. B. Ivanov2026-02-27
⚛️ nuclear experiments

Lifetimes and Transition Probabilities in N=76130XeN = 76 ^{130}Xe

This study reports the direct measurement of lifetimes for the 41+{4}_1^+ and 61+{6}_1^+ states in 130Xe^{130}Xe using the γγ\gamma-\gamma fast timing technique with a CeBr3_3 detector array, and compares the resulting reduced transition probabilities with large-basis shell model and interacting boson model calculations.

D. Kumar, S. Basak, A. Pal, D. Banerjee, S. S. Alam, S. Rajbanshi, T. Bhattacharjee2026-02-27
⚛️ nuclear experiments

Initial results of the TRIUMF ultracold advanced neutron source

The TRIUMF collaboration reports initial successful production of ultracold neutrons from a new spallation-driven superfluid helium-4 source, with results aligning with simulations and indicating the facility is on track to achieve its ultimate goals for a high-precision measurement of the neutron electric dipole moment once the cold moderator system is completed.

B. Algohi, D. Anthony, L. Barrón-Palos, M. Bossé, M. P. Bradley, A. Brossard, T. Bui, J. Chak, R. Chiba, C. Davis, R. de (…)2026-02-27