Browse Issues:

HIGHLIGHTED ARTICLES

Impact of the small Dirac component on the valence electron density of actinides at their nuclei in solids

A. V. Nikolaev, U. N. Kurelchuk, and E. V. Tkalya

Phys. Rev. C 114, 034601 (2026) - Published 3 September, 2026

An enhanced Full-Potential Linear Augmented Plane Wave (FLAPW) method is introduced which incorporates the small Dirac components of valence states—specifically the 6p1/2 semicore states—in actinide solids such as Ac, Th, ThO2, and UO2. By accounting for these small components, it is demonstrated that the valence electron density at the nucleus increases by a factor of 2.4 to 4.3, correcting standard approximations in computational physics that omit significant valence electron density near the atomic nucleus. These refined relativistic Dirac calculations offer improved theoretical precision for nuclear phenomena such as internal conversion, Mossbauer spectroscopy, and electron bridge effects, providing foundational electronic structure insights relevant to technologies like 229Th-based solid-state nuclear clocks.

Decay-resolved charge changes from radioactive decays in levitated microparticles

Jiaxiang Wang, T. W. Penny, Yu-Han Tseng, Benjamin Siegel, and David C. Moore

Phys. Rev. C 114, 034602 (2026) - Published 3 September, 2026

We have demonstrated a new way to reveal the electrical ‘fingerprint’ left by a single nuclear decay. When a radioactive atom implanted just beneath a surface decays, its products can eject a shower of secondary electrons from the surrounding material. Often undetected by conventional laboratory instruments, these electrons can create a substantial background in experiments that rely on precise electron counting. To study this process, we use a microscopic glass sphere suspended by laser light as a highly isolated charge detector with sub-electron charge sensitivity. We pair the sphere with a conventional scintillation detector that records the emitted radiation. By matching the timing of the two signals, we can link each charge change to a specific decay. We found that one alpha decay can knock more than 100 electrons from a material’s surface, while beta decays release far fewer. Measuring these electrical fingerprints one decay at a time could help experiments searching for rare events, including future sterile neutrino searches, to distinguish genuine signals from electrons released by radioactive impurities near detector surfaces.

Electromagnetic radiation from baryon-rich matter in heavy-ion collisions

Xiang-Yu Wu, Charles Gale, Sangyong Jeon, Jean-François Paquet, Björn Schenke, and Chun Shen

Phys. Rev. C 114, 034902 (2026) - Published 8 September, 2026

Photons and dileptons produced in high energy nuclear collisions contain undistorted information about the conditions at their point of emission, such as the local temperature, flow velocity, and chemical potential. Using state of the art modeling of the collision dynamics, which reproduce hadronic spectra, the authors find good agreement with measurements by the STAR Collaboration at the Relativistic Heavy Collider, but differ from measurements by the PHENIX Collaboration in terms of magnitude but not shape. This work shows that the multimessenger approach to heavy-ion collisions previously used at higher energy is amenable to baryon-rich environments at lower temperatures, and paves the way for more comprehensive studies of the QCD phase diagram.

Precise determination of electron-capture Q value of Sn113 decay related to electron neutrino mass measurements

Zhuang Ge, Tommi Eronen, Vasile Alin Sevestrean, Ovidiu Niţescu, Sabin Stoica, Marlom Ramalho, Jouni Suhonen, Anu Kankainen, Marjut Hukkanen, Arthur Jaries, Ari Jokinen, Joel Kostensalo, Jenni Kotila, Maxime Mougeot, Iain D. Moore, Wirunchana Rattanasakuldilok, Jouni Ruotsalainen, and Marek Stryjczyk

Phys. Rev. C 114, 035501 (2026) - Published 10 September, 2026

High-precision measurements of nuclear decay energies can reveal rare low-Q transitions with enhanced sensitivity to the absolute neutrino mass. Using the JYFLTRAP double Penning trap and the PI-ICR technique, the electron-capture Q value of 113Sn was determined with an eightfold improvement in precision over the previous evaluation. Combining the new mass result with known excited states in 113In identifies two energetically allowed low-Q electron-capture branches. In particular, an allowed transition to the 1029.650-keV state has Q*EC=9.60(20) keV and lies close to the L-shell binding energies. Atomic and nuclear calculations show enhanced spectral sensitivity near the endpoint, making this decay an interesting complementary system for future direct neutrino-mass studies.

LETTERS

Constraining neutron skin impurity in Ca48 and its relevance for the CREX-PREX puzzle

Phan Nhut Huan

Phys. Rev. C 114, L031601 (2026) - Published 2 September, 2026

Fragment spin generation and scission mechanism in rapidly rotating fission

Yu Qiang, Zhibo Li, and Junchen Pei

Phys. Rev. C 114, L031602 (2026) - Published 15 September, 2026

Visualization of the pear shape and its quantum fluctuations in atomic nuclei

Zu-Xing Yang, Xiao-Hua Fan, Zhi-Pan Li, and Shunji Nishimura

Phys. Rev. C 114, L031603 (2026) - Published 15 September, 2026

ARTICLES

Nucleon-Nucleon Interaction, Few-Body Systems

Gaussian characterization of two-neutron halo nuclei

A. Deltuva, M. Gattobigio, D. Jurčiukonis, and A. Kievsky

Phys. Rev. C 114, 034001 (2026) - Published 1 September, 2026

Modeling short-range nucleon pair and triplet abundances in atomic nuclei

I. Wischnevsky Shlush, I. Korover, E. Piasetzky, A. Denniston, and R. Wagner

Phys. Rev. C 114, 034002 (2026) - Published 1 September, 2026

Three-body model study of Be12 using the Faddeev method in momentum space

Ning Li, Chang Xu, Jun-Jie He, Liang-Kai Wu, Meng-Jiao Lyu, Jin Li, and Zhao-Jun Ma

Phys. Rev. C 114, 034003 (2026) - Published 4 September, 2026

Ξ-deuteron low-energy s-wave phase shifts and momentum correlation functions in Faddeev formulation

M. Kohno and H. Kamada

Phys. Rev. C 114, 034004 (2026) - Published 8 September, 2026

One- and three-dimensional identical charged-kaon femtoscopic correlations in Pb-Pb collisions at sNN=5.02TeV

I. J. Abualrob et al. (ALICE Collaboration)

Phys. Rev. C 114, 034005 (2026) - Published 8 September, 2026

Two-pion exchange contributions to the nucleon-nucleon interaction from the Roper resonance

Yang Xiao, Li-Sheng Geng, and U. van Kolck

Phys. Rev. C 114, 034006 (2026) - Published 11 September, 2026

Quantum information in neutron-proton scattering from the M matrix

Linjun Xie, Hong Shen, Jinniu Hu, and Ying Zhang

Phys. Rev. C 114, 034007 (2026) - Published 16 September, 2026

Nuclear Structure

Observing the effects of numbers of valence nucleons on 0gs+21+ transitions in deformed nuclei by comparing proton and neutron transition matrix elements

P. D. Cottle, L. A. Riley, A. Gade, K. W. Kemper, and M. Spieker

Phys. Rev. C 114, 034301 (2026) - Published 1 September, 2026

Effect of constraining the 1d3/21f7/2 energy gap in Ca40 using a modified relativistic mean field approach

Nitin Mahavar and A. Bhagwat

Phys. Rev. C 114, 034302 (2026) - Published 2 September, 2026

Reentrance of proton-neutron pairing in hot nuclear systems

T. Vu Dong, Alan A. Dzhioev, A. I. Vdovin, and N. Quang Hung

Phys. Rev. C 114, 034303 (2026) - Published 3 September, 2026

Comparative study of a quartet superfluid state: Quartet Bardeen-Cooper-Schrieffer theory and generalized Nambu-Gor'kov formalism

Yixin Guo (郭一昕), Hiroyuki Tajima (田島裕之), and Haozhao Liang (梁豪兆)

Phys. Rev. C 114, 034304 (2026) - Published 4 September, 2026

Isoscalar giant resonances in highly deformed Yb172

K. Khokhar et al.

Phys. Rev. C 114, 034305 (2026) - Published 4 September, 2026

Influence of nuclear deformation on the α-decay systematics of superheavy nuclei with Z=120130: Density-dependent cluster model and improved empirical approaches

Theeb Alsultan, Saifful Kamaluddin Muzakir, and S. G. Abd-Elnasser

Phys. Rev. C 114, 034306 (2026) - Published 8 September, 2026

Ab initio mapping of the boundary of the N=20 island of inversion

E. F. Zhou (周恩付), C. R. Ding (丁晨蓉), Q. Y. Luo (罗青杨), J. M. Yao (尧江明), and H. Hergert

Phys. Rev. C 114, 034307 (2026) - Published 8 September, 2026

Generic mechanism for shell structure evolution from an energy density functional perspective

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

Phys. Rev. C 114, 034308 (2026) - Published 8 September, 2026

Helium-3 and triton relativistic wave functions in light-front dynamics

Zhimin Zhu, Ziqi Zhang, Kaiyu Fu, and V. A. Karmanov

Phys. Rev. C 114, 034309 (2026) - Published 8 September, 2026

Correcting nuclear mass models with interpretable machine learning to bridge theory and data

Yanhua Lu, Tianshuai Shang, Pengxiang Du, Jian Li, and Haozhao Liang

Phys. Rev. C 114, 034310 (2026) - Published 8 September, 2026

Direct mass measurement of Rh91 and Ru89 and mid-shell trend of the one-proton separation energies for N=Z+1 nuclei

Samuel Ayet San Andrés et al. (for the Super-FRS Experiment Collaboration)

Phys. Rev. C 114, 034311 (2026) - Published 8 September, 2026

Optimized basis of covariant density functional theory: Point coupling functionals and excited states

A. Dalbah, A. V. Afanasjev, and B. Osei

Phys. Rev. C 114, 034312 (2026) - Published 9 September, 2026

Evolution of high-spin states in neutron-rich Au195202 isotopes approaching the N=126 shell closure

Y. Cho et al.

Phys. Rev. C 114, 034313 (2026) - Published 10 September, 2026

Gauge auxiliary-field quantum Monte Carlo method for many-fermion systems

Zhaozhan Zhang

Phys. Rev. C 114, 034314 (2026) - Published 14 September, 2026

Reexamining the role of I3 in mass formulas via the double-difference of binding energies

Junyao Kong, Yibin Qian, and Rui Wang

Phys. Rev. C 114, 034315 (2026) - Published 14 September, 2026

Response of superfluid fermions at finite temperature

Sumit Bhattacharjee and Elena Litvinova

Phys. Rev. C 114, 034316 (2026) - Published 14 September, 2026

Gamow-Teller strength of C12,14,16 within the deformed quasiparticle random-phase approximation

Eunja Ha, Myung-Ki Cheoun, H. Sagawa, and Gianluca Colò

Phys. Rev. C 114, 034317 (2026) - Published 14 September, 2026

Core breaking at low spin in Zn68 from nuclear resonance fluorescence

S. R. Johnson, R. V. F. Janssens, B. A. Brown, A. D. Ayangeakaa, S. S. Bhattacharjee, E. Churchman, S. W. Finch, U. Friman-Gayer, S. Frye, M. Fulghieri, D. Gribble, X. H.-K. James, R. Longland, and C. Wegner

Phys. Rev. C 114, 034318 (2026) - Published 15 September, 2026

Quantum Monte Carlo calculations in the nuclear shell model by the complex Langevin method

Yuhma Asano, Yuta Ito, Jun Nishimura, and Noritaka Shimizu

Phys. Rev. C 114, 034319 (2026) - Published 16 September, 2026

Emulator-assisted nuclear density-functional-theory inference and its consequences for the structure of neutron stars

Pietro Klausner, Marco Antonelli, Gianluca Colò, Francesca Gulminelli, Xavier Roca-Maza, and Enrico Vigezzi

Phys. Rev. C 114, 034320 (2026) - Published 16 September, 2026

Discovery of K-isomeric states in seaborgium isotopes

P. Mošať, B. Andel, J. Khuyagbaatar, D. Ackermann, S. Antalic, S. Heinz, I. Kojouharov, P. Kuusiniemi, M. Mazzocco, J. Mišt, K. Nishio, B. Streicher, B. Sulignano, and F. P. Heßberger

Phys. Rev. C 114, 034321 (2026) - Published 16 September, 2026

Doppler-shift attenuation method lifetimes in Cr54: A reevaluation

A. E. Stuchbery

Phys. Rev. C 114, 034322 (2026) - Published 16 September, 2026

Interplay between tensor force and pairing correlations in the microscopic description of α decay within the Hartree-Fock-Bogoliubov framework

Hailan Zheng, Zhongzhou Ren, Tongqi Liang, Zhen Wang, and Bin Hong

Phys. Rev. C 114, 034323 (2026) - Published 16 September, 2026

Nuclear Reactions

Impact of the small Dirac component on the valence electron density of actinides at their nuclei in solids

A. V. Nikolaev, U. N. Kurelchuk, and E. V. Tkalya

Phys. Rev. C 114, 034601 (2026) - Published 3 September, 2026

An enhanced Full-Potential Linear Augmented Plane Wave (FLAPW) method is introduced which incorporates the small Dirac components of valence states—specifically the 6p1/2 semicore states—in actinide solids such as Ac, Th, ThO2, and UO2. By accounting for these small components, it is demonstrated that the valence electron density at the nucleus increases by a factor of 2.4 to 4.3, correcting standard approximations in computational physics that omit significant valence electron density near the atomic nucleus. These refined relativistic Dirac calculations offer improved theoretical precision for nuclear phenomena such as internal conversion, Mossbauer spectroscopy, and electron bridge effects, providing foundational electronic structure insights relevant to technologies like 229Th-based solid-state nuclear clocks.

Decay-resolved charge changes from radioactive decays in levitated microparticles

Jiaxiang Wang, T. W. Penny, Yu-Han Tseng, Benjamin Siegel, and David C. Moore

Phys. Rev. C 114, 034602 (2026) - Published 3 September, 2026

We have demonstrated a new way to reveal the electrical ‘fingerprint’ left by a single nuclear decay. When a radioactive atom implanted just beneath a surface decays, its products can eject a shower of secondary electrons from the surrounding material. Often undetected by conventional laboratory instruments, these electrons can create a substantial background in experiments that rely on precise electron counting. To study this process, we use a microscopic glass sphere suspended by laser light as a highly isolated charge detector with sub-electron charge sensitivity. We pair the sphere with a conventional scintillation detector that records the emitted radiation. By matching the timing of the two signals, we can link each charge change to a specific decay. We found that one alpha decay can knock more than 100 electrons from a material’s surface, while beta decays release far fewer. Measuring these electrical fingerprints one decay at a time could help experiments searching for rare events, including future sterile neutrino searches, to distinguish genuine signals from electrons released by radioactive impurities near detector surfaces.

Information entropy and Δ-scaling law in central Au197 + Au197 collisions at 20–350 MeV/nucleon

Jin-Mei Wang (汪金梅), Feng-Hua Qiao (乔枫华), Xian-Gai Deng (邓先概), and Yu-Gang Ma (马余刚)

Phys. Rev. C 114, 034603 (2026) - Published 8 September, 2026

Muon-induced fission of actinide nuclei

Christian Ross and A. S. Umar

Phys. Rev. C 114, 034604 (2026) - Published 8 September, 2026

Photonuclear cross sections for the Au197(γ,pn)Pt195m reaction near threshold

J. Song, J. Nolen, D. Rotsch, R. Gampa, R. M. de Kruijff, T. Brossard, C. R. Howell, F. Krishichayan, S. W. Finch, Y. K. Wu, S. Mikhailov, M. W. Ahmed, and R. V. F. Janssens

Phys. Rev. C 114, 034605 (2026) - Published 8 September, 2026

Scintillation response of cryogenic CsI to few-keV and sub-keV nuclear recoils

J. I. Collar, C. M. Lewis, A. Simón, and S. G. Yoon

Phys. Rev. C 114, 034607 (2026) - Published 10 September, 2026

Probing near-barrier reaction dynamics with a B10 projectile

Prabhat Mishra, S. K. Pandit, V. V. Parkar, K. Mahata, A. Shrivastava, Satbir Kaur, D. Chattopadhyay, K. Ramachandran, Vineet Kumar, Arati Chavan, Sangeeta Dhuri, Prasanna M., and S. Rathi

Phys. Rev. C 114, 034608 (2026) - Published 10 September, 2026

Coulomb scaling, geometric normalization, and the limits of a single-Gaussian description of sub-barrier fusion across seven projectile species

A. M. Vinodkumar and B. R. S. Babu

Phys. Rev. C 114, 034609 (2026) - Published 11 September, 2026

Improving the accuracy of W182,184,186(n,nγ) cross-section calculations

G. Henning, M. Dupuis, M. Kerveno, A. Bacquias, C. Borcea, M. Boromiza, R. Capote, A. Coman, Ph. Dessagne, C. de Saint Jean, J.-C. Drohé, K. H. Guber, S. Hilaire, T. Kawano, A. Negret, M. Nyman, A. J. M. Plompen, P. Romain, G. Rudolf, P. Scholtes, and P. Tamagno

Phys. Rev. C 114, 034610 (2026) - Published 11 September, 2026

Impact of potential parameter readjustment on the identification of coupling schemes in heavy-ion fusion reactions

Zhixiu He, Huilin Zhang, and Yingchen Mao

Phys. Rev. C 114, 034611 (2026) - Published 11 September, 2026

Two-neutron stripping reaction dynamics in the O18+Au197 system at near-barrier energies

X. Ma et al.

Phys. Rev. C 114, 034612 (2026) - Published 14 September, 2026

Description of nucleon elastic scattering off Li6 with the four-body continuum-discretized coupled-channels method

Kazuyuki Ogata and Shoya Ogawa

Phys. Rev. C 114, 034613 (2026) - Published 14 September, 2026

Reexamining experimental data on (p,p) scattering off C12 via its Hoyle state and its impact on triple-α reaction rate

A. Baishya, S. Santra, A. Pal, P. C. Rout, T. Santhosh, T. Singh, M. Meher, H. Kumawat, and Ramandeep Gandhi

Phys. Rev. C 114, 034614 (2026) - Published 14 September, 2026

Multimodal shell-driven fission in radium isotopes

K. J. Cook, M. K. Lakelin, J. Buete, D. J. Hinde, M. Dasgupta, M. M. Webber, L. T. Bezzina, S. L. Hayles, H. Lee, P. Linardakis, C. da Costa Seabra, T. Tran, and T. Tunningley

Phys. Rev. C 114, 034615 (2026) - Published 15 September, 2026

Production probability of superheavy nuclei in fusion

Ning Wang, Cheng Li, and Hong Yao

Phys. Rev. C 114, 034616 (2026) - Published 15 September, 2026

Nuclear medium effects in microscopic calculations of α-decay half-lives

M. M. Mesmh, M. Ismail, A. Adel, and A. R. Abdulghany

Phys. Rev. C 114, 034617 (2026) - Published 16 September, 2026

Relativistic Nuclear Collisions

Sensitivity of anisotropic flow in Pb+Pb collisions to the neutron skin of Pb208 at energies available at the CERN Large Hadron Collider

Xin-Li Zhao, Xin-Yi Xie, Yuan Li, and Guo-Liang Ma

Phys. Rev. C 114, 034901 (2026) - Published 8 September, 2026

Electromagnetic radiation from baryon-rich matter in heavy-ion collisions

Xiang-Yu Wu, Charles Gale, Sangyong Jeon, Jean-François Paquet, Björn Schenke, and Chun Shen

Phys. Rev. C 114, 034902 (2026) - Published 8 September, 2026

Photons and dileptons produced in high energy nuclear collisions contain undistorted information about the conditions at their point of emission, such as the local temperature, flow velocity, and chemical potential. Using state of the art modeling of the collision dynamics, which reproduce hadronic spectra, the authors find good agreement with measurements by the STAR Collaboration at the Relativistic Heavy Collider, but differ from measurements by the PHENIX Collaboration in terms of magnitude but not shape. This work shows that the multimessenger approach to heavy-ion collisions previously used at higher energy is amenable to baryon-rich environments at lower temperatures, and paves the way for more comprehensive studies of the QCD phase diagram.

Improved formula for Wigner function and spin polarization in a decoupling relativistic fluid at local thermodynamic equilibrium

Xin-Li Sheng, Francesco Becattini, and Daniele Roselli

Phys. Rev. C 114, 034903 (2026) - Published 8 September, 2026

Causal-horizon scaling of quarkonium suppression in strong QCD fields

Yi Yang

Phys. Rev. C 114, 034904 (2026) - Published 8 September, 2026

Probing the tetrahedral α clusters in relativistic O16+O16 collisions

Jin-Yu Hu, Hao-jie Xu, Xiaobao Wang, and Shi Pu

Phys. Rev. C 114, 034905 (2026) - Published 8 September, 2026

Covariant formulation of relativistic quantum molecular dynamics for a system of interacting wave packets

Yasushi Nara, Asanosuke Jinno, and Koichi Murase

Phys. Rev. C 114, 034906 (2026) - Published 8 September, 2026

f2(1270)π+π as a probe of spin and vorticity in heavy-ion collisions

In Woo Park, Beomkyu Kim, Giorgio Torrieri, Kayman J. Gonçalves, Sanghoon Lim, and Su Houng Lee

Phys. Rev. C 114, 034907 (2026) - Published 8 September, 2026

Microscopic study of baryon stopping in low-energy heavy-ion collisions within the UrQMD model

Sudhir Pandurang Rode

Phys. Rev. C 114, 034908 (2026) - Published 11 September, 2026

Sensitivity of heavy-quark dipolar flow to its initial spatial distributions in Cu+Au collisions

Ankit Kumar Panda and Tribhuban Parida

Phys. Rev. C 114, 034909 (2026) - Published 11 September, 2026

Cumulants of mean transverse momentum and elliptic flow in the hydrodynamic model of heavy-ion collisions

Tribhuban Parida and Piotr Bożek

Phys. Rev. C 114, 034910 (2026) - Published 11 September, 2026

Quadrupole spectra derived from 2.76-TeV Pb-Pb identified-hadron v2(pt) data

Thomas A. Trainor

Phys. Rev. C 114, 034911 (2026) - Published 14 September, 2026

Species-dependent viscous corrections at particlization: A novel relaxation time approximation approach

I. Aguiar, T. Nunes da Silva, G. S. Denicol, M. Luzum, G. S. Rocha, and C. Shen

Phys. Rev. C 114, 034912 (2026) - Published 14 September, 2026

Hadronic Physics and QCD

γW-exchange correction beyond the forward-angle limit in neutron β decay

Hui-Yun Cao and Hai-Qing Zhou

Phys. Rev. C 114, 035202 (2026) - Published 8 September, 2026

Coherent deeply virtual Compton scattering on He4 beyond leading power

V. Martínez-Fernández, B. Pire, P. Sznajder, and J. Wagner

Phys. Rev. C 114, 035203 (2026) - Published 9 September, 2026

Electroweak Interaction, Symmetries

Precise determination of electron-capture Q value of Sn113 decay related to electron neutrino mass measurements

Zhuang Ge, Tommi Eronen, Vasile Alin Sevestrean, Ovidiu Niţescu, Sabin Stoica, Marlom Ramalho, Jouni Suhonen, Anu Kankainen, Marjut Hukkanen, Arthur Jaries, Ari Jokinen, Joel Kostensalo, Jenni Kotila, Maxime Mougeot, Iain D. Moore, Wirunchana Rattanasakuldilok, Jouni Ruotsalainen, and Marek Stryjczyk

Phys. Rev. C 114, 035501 (2026) - Published 10 September, 2026

High-precision measurements of nuclear decay energies can reveal rare low-Q transitions with enhanced sensitivity to the absolute neutrino mass. Using the JYFLTRAP double Penning trap and the PI-ICR technique, the electron-capture Q value of 113Sn was determined with an eightfold improvement in precision over the previous evaluation. Combining the new mass result with known excited states in 113In identifies two energetically allowed low-Q electron-capture branches. In particular, an allowed transition to the 1029.650-keV state has Q*EC=9.60(20) keV and lies close to the L-shell binding energies. Atomic and nuclear calculations show enhanced spectral sensitivity near the endpoint, making this decay an interesting complementary system for future direct neutrino-mass studies.

Nuclear Astrophysics

Indirect measurement of the S*(E) factor for C12(C12,p)Na23 at Gamow energies via the Trojan horse method with near-0 spectator detection

Chengbo Li, Huiming Jia, Qungang Wen, Chengjian Lin, Lei Yang, Feng Yang, Nanru Ma, Tianpeng Luo, Xuepeng Sun, Shangkun Shao, and Xuejian Wang

Phys. Rev. C 114, 035801 (2026) - Published 8 September, 2026

Neutron star matter with hyperons: Bayesian comparison of nucleonic and SU(6)/SU(3) hyperonic models

Athira S., Vishal Parmar, Monika Sinha, and Ignazio Bombaci

Phys. Rev. C 114, 035802 (2026) - Published 8 September, 2026

Nuclear constraints on C12(α,γ)O16 and their impact on black-hole mass predictions

A. M. Mukhamedzhanov

Phys. Rev. C 114, 035803 (2026) - Published 8 September, 2026

Machine- and deep-learning regression for equations of state of compact objects

I. Stergakis, Th. Diakonidis, and Ch. C. Moustakidis

Phys. Rev. C 114, 035804 (2026) - Published 9 September, 2026

ERRATA

Erratum: Quantum magic and multipartite entanglement in the structure of nuclei [Phys. Rev. C 111, 034317 (2025)]

Florian Brökemeier, S. Momme Hengstenberg, James W. T. Keeble, Caroline E. P. Robin, Federico Rocco, and Martin J. Savage

Phys. Rev. C 114, 039901 (2026) - Published 14 September, 2026

Erratum: Observation of new levels and proposed octupole correlations in neutron-rich Ce150 [Phys. Rev. C 85, 014330 (2012)]

E. H. Wang, S. J. Zhu (朱胜江), M. Sakhaee, J. H. Hamilton, A. V. Ramayya, N. T. Brewer, J. K. Hwang, S. H. Liu, E. Y. Yeoh (杨韵颐), Z. G. Xiao (肖志刚), Q. Xu (徐强), Z. Zhang (张钊), Y. X. Luo, J. O. Rasmussen, I. Y. Lee, K. Li, and W. C. Ma

Phys. Rev. C 114, 039902 (2026) - Published 14 September, 2026

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