Browse Issues:

HIGHLIGHTED ARTICLES

Variations in the charge radii of indium isotopes between N=52 and 82

A. R. Vernon et al. (CRIS-ISOLDE Collaboration)

Phys. Rev. C 111, 064325 (2025) - Published 26 June, 2025

The size of the atomic nucleus is a fundamental observable, for which laser spectroscopy of atomic hyperfine transitions can measure the changes in mean-square charge radii as neutrons are added or removed. This work reports an extensive set of results from collinear resonance ionization spectroscopy at ISOLDE-CERN on ground- and isomeric states of indium (Z=49) isotopes, almost spanning the complete valence space between the neutron-shell closures N=50 and 82. Whereas the new results largely agree with literature values within experimental and atomic-factor uncertainties, the authors find intricate variations in the odd-even staggering of the nuclear charge radii. This work shows how the breadth of data can serve as a benchmark for nuclear theory, suggesting directions for further improvements.

Improved S factor of the C13(p,γ)N14 reaction at Ep=330740keV and parameters of resonances at 448 keV and 551 keV

J. Skowronski et al.

Phys. Rev. C 111, 064611 (2025) - Published 11 June, 2025

The stellar carbon-nitrogen-oxygen nuclear reaction cycle (CNO cycle) converts four protons to an α particle providing most of the energy in massive main sequence stars and in stars in more advanced stages. It also affects the nucleosynthesis output of these stars and ultimately the chemical evolution of galaxies. The present manuscript reports on a new cross-section measurement for the 13C(p,γ)14N reaction—the second proton capture reaction in the CNO cycle—performed at the Felsenkeller shallow-underground laboratory in Dresden, Germany. The new data are consistent with recent results reported by the LUNA Collaboration and are about 20\% lower than previous literature data. The newly calculated reaction rate is systematically lower than assumed so far for temperatures up to 10 GK, a result that should have an impact on stellar model calculations and CNO cycle nucleosynthesis.

Modern version of the uncited 1938 experiment that first observed DT fusion

W. Tornow, S. W. Finch, J. B. Wilhelmy, M. B. Chadwick, G. M. Hale, J. P. Lestone, and M. W. Paris

Phys. Rev. C 111, 064618 (2025) - Published 20 June, 2025

Fusion of the two heavy hydrogen isotopes deuterium with tritium is important for future energy production. The authors attempt to reproduce an early experimental result by Arthur J. Ruhlig (published in the Physical Review in 1938, but not cited until 2023) that suggested Ruhlig had observed the so-called “DT” reaction, 3H(d,n)4He in a secondary reaction (see figure). In the present work the authors use modern experimental techniques to repeat the experiment, and they indeed observe DT fusion and measure the reaction rate. In addition to giving insights into the historic nuclear fusion experiment, the technique used could have applications in checking triton stopping powers in deuterium-containing fusion targets.

Sensitivity of double deeply virtual Compton-scattering observables to generalized parton distributions

J. S. Alvarado, M. Hoballah, and E. Voutier

Phys. Rev. C 111, 065205 (2025) - Published 24 June, 2025

A major thrust of twenty-first century electron scattering at the present CEBAF at JLab and at the future Electron Ion Collider (EIC) at BNL is the determination of generalized parton distributions (GPDs), which describe the full 3D quark and gluon structure of the proton and of atomic nuclei. The authors have carried out a comprehensive study of a new, yet-unmeasured process, double deeply virtual Compton scattering (DDVCS), at both CEBAF and EIC, which can access GPDs without restrictions that are present in current measurements. For example, they show the sensitivity of DDVCS cross-section asymmetries to the chiral-even proton GPDs from different model predictions. The insights gained from the systematic analysis promise significant benefit to next-generation experiments designed to study the full 3D quark and gluon structure of hadrons.

Isomeric yield ratios of fission products: A missing piece in reactor antineutrino summation calculations

A. Mattera, A. A. Sonzogni, E. A. McCutchan, C. J. Sears, and C. Billings

Phys. Rev. C 111, L061601 (2025) - Published 11 June, 2025

Nuclear reactors create copious amounts of antineutrinos, but calculating their spectrum is challenging because one must understand in great detail both the available nuclear data and which physics contributions are relevant. Accurate new experiments have shown a 5% neutrino deficit in the detected flux known as the “reactor antineutrino anomaly”, and an excess at 5 to 7 MeV. The authors explore the effect of one particular and so far not fully appreciated input, the ratio of fission yield from an isomeric state to the total yield, known as the isomeric yield ratio (IYR) and which reflects different endpoint energies of the antineutrino spectra. Examining newly evaluated IYRs, the authors find that the values for certain isotopes significantly increase the antineutrino spectrum around and above 7 MeV with a 50% or greater increase at higher energies. The sensitivity study in this work identifies the need for accurate experimental data, especially for key fission products, to fully understand the observed discrepancies between measured and calculated antineutrino spectra.

LETTERS

Conclusive evidence of a two-neutron multiphonon transverse wobbling mode in Kr82

S. Rajbanshi, R. Palit, Habibur Rahaman, G. Manna, Sajad Ali, S. Chakraborty, G. H. Bhat, S. Jehangir, J. A. Sheikh, F. S. Babra, R. Banik, S. Bhattacharya, S. Bhattacharyya, P. Dey, Md. S. R. Laskar, G. Mukherjee, S. Nandi, H. Pai, Rajkumar Santra, and T. Trivedi

Phys. Rev. C 111, L061301 (2025) - Published 2 June, 2025

Isomeric yield ratios of fission products: A missing piece in reactor antineutrino summation calculations

A. Mattera, A. A. Sonzogni, E. A. McCutchan, C. J. Sears, and C. Billings

Phys. Rev. C 111, L061601 (2025) - Published 11 June, 2025

Nuclear reactors create copious amounts of antineutrinos, but calculating their spectrum is challenging because one must understand in great detail both the available nuclear data and which physics contributions are relevant. Accurate new experiments have shown a 5% neutrino deficit in the detected flux known as the “reactor antineutrino anomaly”, and an excess at 5 to 7 MeV. The authors explore the effect of one particular and so far not fully appreciated input, the ratio of fission yield from an isomeric state to the total yield, known as the isomeric yield ratio (IYR) and which reflects different endpoint energies of the antineutrino spectra. Examining newly evaluated IYRs, the authors find that the values for certain isotopes significantly increase the antineutrino spectrum around and above 7 MeV with a 50% or greater increase at higher energies. The sensitivity study in this work identifies the need for accurate experimental data, especially for key fission products, to fully understand the observed discrepancies between measured and calculated antineutrino spectra.

Heavy-ion double-charge-exchange reactions as probes for two-body transition densities

Jessica I. Bellone, Maria Colonna, Danilo Gambacurta, and Horst Lenske

Phys. Rev. C 111, L061602 (2025) - Published 23 June, 2025

ARTICLES

Nucleon-Nucleon Interaction, Few-Body Systems

Renormalization group analysis of electromagnetic properties of the deuteron

Thomas R. Richardson and Immo C. Reis

Phys. Rev. C 111, 064001 (2025) - Published 11 June, 2025

Order-by-order uncertainties of nucleon-nucleon Wolfenstein amplitudes in chiral effective field theory

B. McClung, Ch. Elster, and D. R. Phillips

Phys. Rev. C 111, 064002 (2025) - Published 17 June, 2025

Three-particle breakup amplitudes from wave-packet solutions of time-dependent Faddeev equations

Zeki C. Kuruoglu

Phys. Rev. C 111, 064003 (2025) - Published 23 June, 2025

Solving reaction dynamics with quantum computing algorithms

R. Weiss, A. Baroni, J. Carlson, and I. Stetcu

Phys. Rev. C 111, 064004 (2025) - Published 25 June, 2025

Nuclear Structure

Shape coexistence and band mixing in Sn116: Insights from density functional theory and collective models

Amir Jalili, Ziba Saleki, Feng Pan, Y. A. Luo, Ai-Xi Chen, Mahmut Böyükata, and Yu Zhang

Phys. Rev. C 111, 064301 (2025) - Published 2 June, 2025

Nuclear excitation by near-resonant electron transitions in Th39+229 ions

Karol Kozioł and Jacek Rzadkiewicz

Phys. Rev. C 111, 064302 (2025) - Published 2 June, 2025

Modification of single-hole-like states by configuration mixing in In99131

Deepak Patel, Praveen C. Srivastava, Noritaka Shimizu, and Yutaka Utsuno

Phys. Rev. C 111, 064303 (2025) - Published 2 June, 2025

Benchmarking artificial neural network extrapolations of the ground-state energies and radii of Li isotopes

M. Knöll, M. Lockner, P. Maris, R. J. McCarty, R. Roth, J. P. Vary, and T. Wolfgruber

Phys. Rev. C 111, 064304 (2025) - Published 3 June, 2025

Investigating nuclear density profiles to reveal particle-hole configurations in the island of inversion

R. Barman, W. Horiuchi, M. Kimura, and R. Chatterjee

Phys. Rev. C 111, 064305 (2025) - Published 4 June, 2025

Patterns of spin and pseudospin symmetries in nuclear relativistic mean-field approaches

L. Heitz, J.-P. Ebran, and E. Khan

Phys. Rev. C 111, 064306 (2025) - Published 4 June, 2025

Tensor force contribution to the symmetry energy with chiral NN interactions

J. Y. Fu, P. Yin, X. L. Shang, H. Y. Shang, E. Epelbaum, and W. Zuo

Phys. Rev. C 111, 064307 (2025) - Published 4 June, 2025

Electric dipole response of sd-shell nuclei within the configuration-interaction shell-model approach

O. Le Noan and K. Sieja

Phys. Rev. C 111, 064308 (2025) - Published 6 June, 2025

Relativistic configuration-interaction density functional theory for nuclear wobbling motion

T. Qu, Y. K. Wang, and P. W. Zhao

Phys. Rev. C 111, 064309 (2025) - Published 6 June, 2025

Structure of Sn128 selectively populated in the β decay of the In128 ground state

M. Llanos-Expósito et al. (IDS collaboration)

Phys. Rev. C 111, 064310 (2025) - Published 10 June, 2025

Microscopic analysis of the giant monopole resonance excitation energy

M. K. Gaidarov, M. V. Ivanov, Y. I. Katsarov, A. N. Antonov, and I. C. Danchev

Phys. Rev. C 111, 064311 (2025) - Published 10 June, 2025

α decay of the neutron-deficient nucleus Np224 by the particle-number-conserving method in the framework of the deformed shell model

Xiao-Tao He, Kun Huang, T. M. Shneidman, N. V. Antonenko, Jun Zhang, and Hong-qiang You

Phys. Rev. C 111, 064312 (2025) - Published 11 June, 2025

Wobbling motion in octupole deformed nuclei

Yeruoxi Chen, Q. B. Chen, and R. V. Jolos

Phys. Rev. C 111, 064313 (2025) - Published 12 June, 2025

Spectroscopy of unnatural-parity states up to band termination in Ca43

Rozina Rahaman, Abhijit Bisoi, Y. Sapkota, Arkabrata Gupta, Ananya Das, S. Ray, S. Sarkar, Yashraj, A. Sharma, Bharti Rohila, I. Ahmed, Kaushik Katre, S. Dutt, S. Kumar, R. P. Singh, R. Kumar, and S. Muralithar

Phys. Rev. C 111, 064314 (2025) - Published 13 June, 2025

Reduced-basis method for few-body bound-state emulation

R. Y. Cheng (成若玉), K. Godbey, Y. B. Niu (牛奕博), W. B. He (何万兵), and S. M. Wang (王思敏)

Phys. Rev. C 111, 064315 (2025) - Published 13 June, 2025

Al31 structure based on spin-parity assignments

H. Nishibata, A. Odahara, T. Shimoda, S. Iimura, S. Kanaya, D. Maejima, Y. Okami, Y. Otani, Y. Hamano, J. Lassen, C. D. P. Levy, R. Li, M. R. Pearson, N. Sekiguchi, K. Asakawa, A. Hatakeyama, Y. Hirayama, N. Shimizu, and T. Otsuka

Phys. Rev. C 111, 064317 (2025) - Published 17 June, 2025

Toward scalable bound-to-resonance extrapolations for few- and many-body systems

Nuwan Yapa, Sebastian König, and Kévin Fossez

Phys. Rev. C 111, 064318 (2025) - Published 17 June, 2025

Nuclear α decay based on the pick-up mechanism

Xiaojun Sun, Yanran Cui, Fanglei Zou, Kang Xing, Junlong Tian, and Ning Wang

Phys. Rev. C 111, 064319 (2025) - Published 23 June, 2025

Dipole response of deformed halo nuclei Ne31 and Mg37

Xiao Lu (陆晓), Hiroyuki Sagawa (佐川弘幸), and Shan-Gui Zhou (周善贵)

Phys. Rev. C 111, 064320 (2025) - Published 23 June, 2025

Variance minimization for nuclear structure on a quantum computer

I. Hobday, P. D. Stevenson, and J. Benstead

Phys. Rev. C 111, 064321 (2025) - Published 23 June, 2025

Low-energy spectra of nobelium isotopes: Skyrme random-phase-approximation analysis

V. O. Nesterenko, M. A. Mardyban, A. Repko, R. V. Jolos, P.-G. Reinhard, and Alan A. Dzhioev

Phys. Rev. C 111, 064322 (2025) - Published 25 June, 2025

Electron capture of superheavy nuclei with realistic lepton wave functions

A. Ravlić, P. Schwerdtfeger, and W. Nazarewicz

Phys. Rev. C 111, 064323 (2025) - Published 26 June, 2025

Machine learning for decoding spin-zero and octupole excitations

B. F. Lv, Yongjia Wang, Zhilong Li, and C. M. Petrache

Phys. Rev. C 111, 064324 (2025) - Published 26 June, 2025

Variations in the charge radii of indium isotopes between N=52 and 82

A. R. Vernon et al. (CRIS-ISOLDE Collaboration)

Phys. Rev. C 111, 064325 (2025) - Published 26 June, 2025

The size of the atomic nucleus is a fundamental observable, for which laser spectroscopy of atomic hyperfine transitions can measure the changes in mean-square charge radii as neutrons are added or removed. This work reports an extensive set of results from collinear resonance ionization spectroscopy at ISOLDE-CERN on ground- and isomeric states of indium (Z=49) isotopes, almost spanning the complete valence space between the neutron-shell closures N=50 and 82. Whereas the new results largely agree with literature values within experimental and atomic-factor uncertainties, the authors find intricate variations in the odd-even staggering of the nuclear charge radii. This work shows how the breadth of data can serve as a benchmark for nuclear theory, suggesting directions for further improvements.

Entanglement in two-quasiparticle-triaxial-rotor systems: Chirality, wobbling, and the Pauli effect

Q. B. Chen and S. Frauendorf

Phys. Rev. C 111, 064326 (2025) - Published 27 June, 2025

Nuclear Reactions

Direct measurement of B8+p and Be7+2p cross sections for C9+Pb208 at 303 MeV

G. Yang, K. Wang, H. Liu, W. D. Chen, Y. Y. Yang, F. F. Duan, Jin Lei, D. Y. Pang, Z. H. Gao, S. Y. Jin, J. S. Wang, X. Liu, S. W. Xu, J. B. Ma, P. Ma, Z. Bai, Q. Hu, and Z. Y. Sun (RIBLL Collaboration)

Phys. Rev. C 111, 064602 (2025) - Published 4 June, 2025

Exploring cluster radioactivity and decay half-lives using different nuclear densities and approaches

Deepika Jain, Nishu Jain, and Raj Kumar

Phys. Rev. C 111, 064603 (2025) - Published 6 June, 2025

Quantification of the evaporation process during fragmentation of C12, N14, O16, and Ne20 on elemental targets

Sukhendu De, V. Choudhary, R. Chatterjee, and W. Horiuchi

Phys. Rev. C 111, 064604 (2025) - Published 6 June, 2025

Empirical relations using symbolic regression models for cluster decay half-lives

S. Madhumitha Shree and M. Balasubramaniam

Phys. Rev. C 111, 064605 (2025) - Published 9 June, 2025

Exploring total fission cross sections of neutron- and proton-induced reactions of exotic nuclei at relativistic energies using the INCLABLA++ models

J. L. Rodríguez-Sánchez, A. Graña-González, J.-C. David, G. García-Jiménez, J. Hirtz, and A. Kelić-Heil

Phys. Rev. C 111, 064606 (2025) - Published 9 June, 2025

Effective finite-range Gogny-type interaction for quantum-molecular-dynamics-like models

Meiqi Sun, Dandan Niu, Junping Yang, Ying Cui, Zhuxia Li, Qiang Zhao, Kai Zhao, and Yingxun Zhang

Phys. Rev. C 111, 064607 (2025) - Published 10 June, 2025

Nuclear transparency and shadowing of the two-step process in the A(e,eπ+) reaction

Tae Keun Choi, Kook-Jin Kong, and Byung-Geel Yu

Phys. Rev. C 111, 064608 (2025) - Published 10 June, 2025

R-matrix analysis of the Be8 system

S. N. Paneru, H. Y. Lee, R. J. deBoer, M. W. Paris, G. M. Hale, M. Febbraro, E. A. Bennett, C. Fichtl, N. A. Gibson, J. Görres, C. Hamilton, S. A. Kuvin, K. Manukyan, M. Mosby, C. Prokop, D. Robertson, H. Sasaki, E. Stech, W. P. Tan, and M. Wiescher

Phys. Rev. C 111, 064609 (2025) - Published 11 June, 2025

Probing small neutron skin variations in isotope pairs by hyperon-antihyperon production in antiproton-nucleus interactions

Falk Schupp, Josef Pochodzalla, Michael Bölting, Martin Christiansen, Theodoros Gaitanos, Horst Lenske, and Marcell Steinen

Phys. Rev. C 111, 064610 (2025) - Published 11 June, 2025

Improved S factor of the C13(p,γ)N14 reaction at Ep=330740keV and parameters of resonances at 448 keV and 551 keV

J. Skowronski et al.

Phys. Rev. C 111, 064611 (2025) - Published 11 June, 2025

The stellar carbon-nitrogen-oxygen nuclear reaction cycle (CNO cycle) converts four protons to an α particle providing most of the energy in massive main sequence stars and in stars in more advanced stages. It also affects the nucleosynthesis output of these stars and ultimately the chemical evolution of galaxies. The present manuscript reports on a new cross-section measurement for the 13C(p,γ)14N reaction—the second proton capture reaction in the CNO cycle—performed at the Felsenkeller shallow-underground laboratory in Dresden, Germany. The new data are consistent with recent results reported by the LUNA Collaboration and are about 20\% lower than previous literature data. The newly calculated reaction rate is systematically lower than assumed so far for temperatures up to 10 GK, a result that should have an impact on stellar model calculations and CNO cycle nucleosynthesis.

Exploration of multifragment emission from the Cf252 nucleus in a collinear configuration mode

Chahat Jindal, Nitin Sharma, and Manoj K. Sharma

Phys. Rev. C 111, 064612 (2025) - Published 11 June, 2025

Late-time emission of prompt fission γ rays from U235(n,f) and Cf252(sf)

G. Rusev, B. Baramsai, E. M. Bond, T. A. Bredeweg, A. Couture, J. M. O'Donnell, M. Jandel, A. E. Lovell, S. Mosby, C. J. Prokop, I. Stetcu, P. Talou, and J. L. Ullmann

Phys. Rev. C 111, 064613 (2025) - Published 12 June, 2025

Pauli-blocking effects in Nilsson states of weakly bound exotic nuclei

P. Punta, J. A. Lay, A. M. Moro, and G. Colò

Phys. Rev. C 111, 064614 (2025) - Published 16 June, 2025

Statistical nucleation in expanding nuclear matter

N. Buyukcizmeci, A. Ergun, A. S. Botvina, and M. Bleicher

Phys. Rev. C 111, 064615 (2025) - Published 16 June, 2025

Nuclear clustering process in heavy-ion collisions: Experimental constraints on the low-temperature region of the QCD phase diagram

E. Bonnet, B. Borderie, R. Bougault, A. Chbihi, Q. Fable, J. D. Frankland, D. Gruyer, M. La Commara, A. Le Fèvre, N. Le Neindre, I. Lombardo, J. Łukasik, M. Pârlog, G. Verde, and J. P. Wieleczko (INDRA Collaboration)

Phys. Rev. C 111, 064616 (2025) - Published 17 June, 2025

Continuum Λ spectra for a Li hypernucleus in the Li6(K, π) reaction

Toru Harada and Yoshiharu Hirabayashi

Phys. Rev. C 111, 064617 (2025) - Published 17 June, 2025

Modern version of the uncited 1938 experiment that first observed DT fusion

W. Tornow, S. W. Finch, J. B. Wilhelmy, M. B. Chadwick, G. M. Hale, J. P. Lestone, and M. W. Paris

Phys. Rev. C 111, 064618 (2025) - Published 20 June, 2025

Fusion of the two heavy hydrogen isotopes deuterium with tritium is important for future energy production. The authors attempt to reproduce an early experimental result by Arthur J. Ruhlig (published in the Physical Review in 1938, but not cited until 2023) that suggested Ruhlig had observed the so-called “DT” reaction, 3H(d,n)4He in a secondary reaction (see figure). In the present work the authors use modern experimental techniques to repeat the experiment, and they indeed observe DT fusion and measure the reaction rate. In addition to giving insights into the historic nuclear fusion experiment, the technique used could have applications in checking triton stopping powers in deuterium-containing fusion targets.

Deuteron evaporation from N=Z compound nuclei

Y. Hrabar et al.

Phys. Rev. C 111, 064619 (2025) - Published 20 June, 2025

Low-energy fusion of doubly magic nuclei: The notable case of O16+Ca48

A. M. Stefanini, G. Montagnoli, M. Del Fabbro, F. Fontana, P. Aguilera, G. Andreetta, D. Brugnara, G. Colucci, L. Corradi, E. Fioretto, F. Galtarossa, A. Goasduff, B. Gongora Servin, A. Gozzelino, M. Heine, G. Harmant, D. Mengoni, M. Luciani, K. Rezynkina, S. Rocca, and D. Stramaccioni

Phys. Rev. C 111, 064620 (2025) - Published 20 June, 2025

Quantum-mechanical description of angular motion of fission fragments at scission

T. M. Shneidman, A. Rahmatinejad, G. G. Adamian, and N. V. Antonenko

Phys. Rev. C 111, 064621 (2025) - Published 30 June, 2025

Relativistic Nuclear Collisions

Flow harmonic correlations via multiparticle symmetric and asymmetric cumulants in Au+Au collisions at sNN=200 GeV

Kaiser Shafi, Prabhupada Dixit, Sandeep Chatterjee, and Md. Nasim

Phys. Rev. C 111, 064901 (2025) - Published 2 June, 2025

Anisotropic flows of identified hadrons in the equal-velocity quark combination model at energies available at the BNL Relativistic Heavy Ion Collider

Yan-ting Feng, Rui-qin Wang, Feng-lan Shao, and Jun Song

Phys. Rev. C 111, 064902 (2025) - Published 2 June, 2025

Examination of the possibility of π0 condensation and magnetization in freely interpenetrating nuclei

D. N. Voskresensky

Phys. Rev. C 111, 064903 (2025) - Published 2 June, 2025

Electromagnetic emission from strongly interacting hadronic and partonic matter created in heavy-ion collisions

Adrian William Romero Jorge, Taesoo Song, Qi Zhou, and Elena Bratkovskaya

Phys. Rev. C 111, 064904 (2025) - Published 5 June, 2025

Bayesian reconstruction of anisotropic flow fluctuations at fixed impact parameter

Enak Roubertie, Mathis Verdan, Andreas Kirchner, and Jean-Yves Ollitrault

Phys. Rev. C 111, 064906 (2025) - Published 9 June, 2025

Semi-inclusive direct photon + jet and π0+jet correlations measured in p+p and central Au+Au collisions at sNN=200GeV

B. E. Aboona et al. (The STAR Collaboration)

Phys. Rev. C 111, 064907 (2025) - Published 11 June, 2025

Stochastic relativistic viscous hydrodynamics from the Metropolis algorithm

Jay Bhambure, Rajeev Singh, and Derek Teaney

Phys. Rev. C 111, 064909 (2025) - Published 13 June, 2025

Relativistic viscous hydrodynamics in the density frame: Numerical tests and comparisons

Jay Bhambure, Aleksas Mazeliauskas, Jean-François Paquet, Rajeev Singh, Mayank Singh, Derek Teaney, and Fabian Zhou

Phys. Rev. C 111, 064910 (2025) - Published 13 June, 2025

Hard-photon-triggered jets in pp and AA collisions

C. Sirimanna et al. (JETSCAPE Collaboration)

Phys. Rev. C 111, 064911 (2025) - Published 17 June, 2025

Longitudinal spin polarization in a thermal model with dissipative corrections

Soham Banerjee, Samapan Bhadury, Wojciech Florkowski, Amaresh Jaiswal, and Radoslaw Ryblewski

Phys. Rev. C 111, 064912 (2025) - Published 26 June, 2025

Higher-order symmetry plane correlations in Pb-Pb collisions at sNN=5.02TeV

S. Acharya et al. (ALICE Collaboration)

Phys. Rev. C 111, 064913 (2025) - Published 30 June, 2025

Hadronic Physics and QCD

Electromagnetic form factors for nucleons in short-range correlations and the EMC effect

Dmitriy N. Kim, Or Hen, Gerald A. Miller, E. Piasetzky, M. Strikman, and L. Weinstein

Phys. Rev. C 111, 065201 (2025) - Published 12 June, 2025

γW-exchange contributions in neutron β decay in the forward-angle limit

Hui-Yun Cao and Hai-Qing Zhou

Phys. Rev. C 111, 065202 (2025) - Published 16 June, 2025

Probing the nuclear liquid-gas phase transition with isospin correlations

Michał Marczenko, Krzysztof Redlich, and Chihiro Sasaki

Phys. Rev. C 111, 065203 (2025) - Published 17 June, 2025

Pion fragmentation functions from a quark-jet model in a functional approach

Roberto Correa da Silveira, Fernando E. Serna, and Bruno El-Bennich

Phys. Rev. C 111, 065204 (2025) - Published 24 June, 2025

Sensitivity of double deeply virtual Compton-scattering observables to generalized parton distributions

J. S. Alvarado, M. Hoballah, and E. Voutier

Phys. Rev. C 111, 065205 (2025) - Published 24 June, 2025

A major thrust of twenty-first century electron scattering at the present CEBAF at JLab and at the future Electron Ion Collider (EIC) at BNL is the determination of generalized parton distributions (GPDs), which describe the full 3D quark and gluon structure of the proton and of atomic nuclei. The authors have carried out a comprehensive study of a new, yet-unmeasured process, double deeply virtual Compton scattering (DDVCS), at both CEBAF and EIC, which can access GPDs without restrictions that are present in current measurements. For example, they show the sensitivity of DDVCS cross-section asymmetries to the chiral-even proton GPDs from different model predictions. The insights gained from the systematic analysis promise significant benefit to next-generation experiments designed to study the full 3D quark and gluon structure of hadrons.

Electroweak Interaction, Symmetries

Right-handed weak currents in neutrinoless ββ decays and ton-scale ββ detectors

Hiroyasu Ejiri, Takeshi Fukuyama, and Toru Sato

Phys. Rev. C 111, 065501 (2025) - Published 13 June, 2025

Nuclear Astrophysics

Total absorption spectroscopy for the β+ decay strength distribution of Ga60

G. Owens-Fryar, S. M. Lyons, A. L. Richard, A. Spyrou, B. A. Brown, C. E. P. Robin, Z. Meisel, H. C. Berg, A. Chester, A. A. Chen, B. Crider, P. A. DeYoung, P. Gastis, E. C. Good, C. Harris, K. Hermansen, S. N. Liddick, A. Palmisano-Kyle, A. Psaltis, M. K. Smith, E. Rubino, S. K. Subedi, I. Sultana, and A. Tsantiri

Phys. Rev. C 111, 065801 (2025) - Published 2 June, 2025

Half-vortex states in the rotating outer core of neutron stars

J. A. Gil Granados, A. Muñoz Mateo, and X. Viñas

Phys. Rev. C 111, 065802 (2025) - Published 2 June, 2025

New upper limits for β-delayed fission probabilities of Fr230,232 and Ac230,232,234

S. Bara et al.

Phys. Rev. C 111, 065803 (2025) - Published 2 June, 2025

Refining the deep sub-barrier C12+C12 fusion excitation function with the STELLA apparatus

J. Nippert et al. (STELLA Collaboration)

Phys. Rev. C 111, 065804 (2025) - Published 6 June, 2025

ERRATA

Erratum: Identification of a quasiparticle band in very neutron-rich Zr104 [Phys. Rev. C 82, 027302 (2010)]

E. H. Wang, E. Y. Yeoh (杨韵颐), S. J. Zhu (朱胜江), J. H. Hamilton, A. V. Ramayya, Y. X. Liu (刘艳鑫), Y. Sun (孙扬), J. K. Hwang, S. H. Liu, J. G. Wang (王建国), Y. X. Luo, J. O. Rasmussen, I. Y. Lee, H. B. Ding (丁怀博), L. Gu (顾龙), Q. Xu (徐强), and Z. G. Xiao (肖志刚)

Phys. Rev. C 111, 069902 (2025) - Published 11 June, 2025

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