PaperPanorama

Nuclear Theory·nucl-th

Tuesday·April 28, 2026

14 papers5 primary·9 cross-listed

  1. 01

    On the Cancellation of Nuclear Effects in the Valence Region

    S.A. Kulagin · R. Petti

    Deep-inelastic scattering data on targets ranging from deuterium to lead indicate that nuclear modifications to the structure functions of bound nucleons are minimal in the kinematic region where valence quark distributions peak. A global analysis of measurements of the isoscalar cross-section ratios in the range reveals a remarkable cancellation of nuclear effects across all nuclei, yielding a mean value of . We discuss these results and explore potential interpretations within a microscopic model for the nuclear modifications of the structure functions.

    nucl-thhep-exhep-phnucl-ex0 citations
  2. 02

    Nuclear non-resonant photoexcitation assisted by electron recombination

    Nan Xue · Zuoye Liu · Ziwen Li · Adriana Pálffy · Jianmin Yuan · Yuanbin Wu · Xiangjin Kong · Yu-Gang Ma

    We investigate theoretically a nuclear excitation mechanism involving absorption of non-resonant photons leveraged by the coupling to the atomic shell. The nuclear non-resonant photoexcitation is assisted by electron recombination which compensates the energy mismatch between photon and nuclear transition energies, reminiscent of parametric up-conversion in non-linear media. This third-order process proceeds via a virtual nuclear state rather than virtual electronic states, distinguishing this mechanism from the electronic bridge. We investigate the process on the example of a so-far not observed 14.2 keV hard x-ray transition in 193Pt driven by an x-ray free-electron laser. Although the calculated cross section is small, it can be compensated by the vast number of non-resonant photons from the x-ray laser pulse. By enabling nuclear excitation through non-resonant photons, this up-conversion-like mechanism suggests new directions for non-linear x-ray interactions mediated by nuclear transitions.

    nucl-thSCPMA(2026)·0 citations
  3. 03

    Survival of Pairing Correlations and Shell Effects at Scission in Finite-Temperature Nuclear Fission: Implications for Odd-Even Staggering

    K. Pomorski · A. Augustyn · T. Cap · Y. J. Chen · M. Kowal · M. Warda · Z. G. Xiao

    We investigate the finite-temperature evolution of microscopic free-energy corrections in nuclear fission, focusing on pairing and shell effects near scission. The analysis is based on a finite-temperature BCS treatment combined with the Strutinsky method and is performed for representative deformation points along the fission path. Both pairing and shell contributions exhibit regular thermal attenuation, but their deformation dependencies differ substantially. In particular, pairing remains strongly deformation-dependent in the scission region, and its free-energy contribution differs markedly between the constant and surface-dependent pairing-strength prescriptions. The shell correction near scission is also significant at low temperature and is progressively suppressed with increasing excitation energy. These results support the interpretation of odd-even staggering in fragment charge yields as a manifestation of pairing correlations surviving into the strongly deformed pre-scission configuration. They also show that pairing and shell effects should be treated separately in finite-temperature dynamical calculations, with distinct deformation- and temperature-dependent attenuation laws.

    nucl-thPRC(2026)·0 citations
  4. 04

    Field-theoretical description of the deuteron breakup in the clothed particle representation

    O. Shebeko🇺🇦 · A. Arslanaliev🇺🇦 · Y. Kostylenko🇺🇦 · V. Chahar🇵🇱 · J. Golak🇵🇱 · H. Kamada🇯🇵 · W. N. Polyzou🇺🇸 · D. Ramírez🇵🇱 · R. Skibiński🇵🇱 · K. Topolnicki🇵🇱 · H. Witała🇵🇱

    We present a field-theoretical description of the deuteron electrodisintegration reaction d(e,e'p)n induced by unpolarized and polarized electrons. The approach combines the Lehmann-Symanzik-Zimmermann in(out) formalism with the clothed particle representation in the instant form of relativistic dynamics, providing a fully relativistic and gauge-independent framework based on the Fock-Weyl criterion. Within the method of unitary clothing transformations, one and the same transformation that generates the relativistic nucleon-nucleon interaction (the Kharkiv potential) also induces a fresh family of electromagnetic current operators. As a result, one-body and two-body (meson-exchange) currents emerge on a common footing. We compute differential cross sections and polarization observables with the inclusion of final-state interaction effects and meson-exchange current contributions, and compare the results with Saclay and Jefferson Lab data as well as with earlier theoretical predictions. The role of relativistic ingredients (one- and two-body currents, Fermi-motion effects, etc.) and the interplay between them are analyzed in several kinematic regimes of the experiments at Saclay and Jefferson Lab.

    nucl-th0 citations
  5. 05

    Neutrino Cross Sections: Low Energy

    Omar Benhar🇮🇹

    Low-energy neutrino interactions with isolated nucleons are accurately described by the effective theory based on Fermi's groundbreaking description of neutron -decay. On the other hand, the extension of this scheme to the case of neutrino interactions with nuclear matter -- the understanding of which is critical for the description of a variety of astrophysical processes -- involves non trivial difficulties, originating from the complexity of nuclear structure and dynamics. This chapter provides a concise introduction to the formalism of nuclear many-body theory, suitable to perform theoretical calculations of the nuclear matter response to neutrino interactions, as well as a detailed analysis of the relevant reaction mechanisms. The neutrino mean free path in nuclear matter and its implications for the description of astrophysical processes are also discussed.

    nucl-th0 citations
  6. 06

    Compositeness of near-threshold states in charged hadronic systems

    Tomon Kinugawa🇯🇵 · Tetsuo Hyodo🇯🇵

    We quantify the internal structure of near-threshold bound, virtual, and resonance states in systems where Coulomb and short-range interactions coexist by evaluating the compositeness. Using the Coulomb-modified effective range expansion, we derive an expression for the compositeness in terms of the eigenenergy and Coulomb effective range in the weak-binding limit. We then apply the formulation to several near-threshold states in hadronic and nuclear systems, including , , , , , and .

    hep-phnucl-thJ.Subatomic Part.Cosmol.(2026)·0 citations
  7. 07

    Amplitude-Based Analysis of QED Radiative Corrections to Electroproduction of -Mesons on Protons

    Isabella Illari🇺🇸 · Andrei Afanasev🇺🇸 · William J. Briscoe🇺🇸 · Victor L. Kashevarov🇮🇹 · Axel Schmidt🇺🇸 · Igor I. Strakovsky🇺🇸

    A formalism for radiative correction calculations in exclusive electroproduction on the proton is presented, extending the treatment developed for the pion channel. The EXCLURAD code is used in the radiative correction procedure with EtaMAID-2023 multipole amplitudes. The cross-section correction factor varies by up to across the resonance region - GeV at GeV, with a local maximum near GeV driven by the and resonances. The beam-spin asymmetry is suppressed by 15-25% at the same kinematics. Numerical results covering - GeV and the full angular range are provided for kinematics relevant to CLAS12 experiments at Jefferson Lab.

    hep-phnucl-exnucl-th0 citations
  8. 08

    Possible Evidence for Neutral Color-Singlet Quark Matter from High-Energy Pb-Emulsion Collisions

    Cheuk-Yin Wong🇺🇸

    The invariant mass spectrum of pairs produced in high-energy Pb-emulsion collisions at 160 A GeV at CERN SPS exhibits a highly complex structure of a broad enhancement at 111 MeV with a full width of about 10 MeV, and additional many narrow resonances within the experimental bin width of 2 MeV, including a prominent narrow resonance at 19 1 MeV that provides an independent support for the hypothetical X17 particle. We show that the highly complex spectrum may be coherently described as the signatures for the neutral color-singlet quark matter in both its deconfined phase as well as its confined phase. That is, the broad enhancement at 111 MeV may arise from thermal annihilation of QED(U(1))-deconfined quarks and antiquarks into pairs at the phase transition temperature (QED), which can be theoretically estimated to be 4.75 1.04 MeV from the transitional equilibrium condition. The observed narrow resonances at 31 and 71 MeV may correspond to the QED(U(1))-deconfined and Coulomb bound states near their quark rest masses, respectively, whereas the observed narrow resonance at 19 1 MeV may correspond to the QED(U(1))-confined isoscalar QED meson. The approximate agreement between the theoretical and the experimental spectrum suggests tentatively that both QED(U(1))-confined and QED(U(1))-deconfined neutral color-singlet quark matter may have been produced in these high-energy Pb-emulsion collision, pending confirmation of the Pb-emulsion collision data. We propose future experiments to confirm or refute these findings.

    hep-phhep-thnucl-th0 citations
  9. 09

    Three regimes/phases of QCD at high T, their symmetries and N_c scaling

    L. Ya. Glozman

    We review recent developments on the QCD phase diagram at small chemical potentials and increasing temperature. There are three regimes/phases in QCD which differ by symmetries, degrees of freedom and N_c scaling: the hadron gas below the chiral restoration temperature T_ch, the stringy fluid between T_ch and the deconfinement temperature T_d and the quark-gluon plasma above T_d.

    hep-phhep-exhep-lathep-th+10 citations
  10. 10

    Weyl anomaly induced transport in hydrodynamics

    Shi-Zheng Yang🇨🇳 · Jian-Hua Gao🇨🇳 · Zuo-Tang Liang🇨🇳 · Georgy Yu. Prokhorov🇷🇺 · Shi Pu🇨🇳 · Oleg V. Teryaev🇷🇺 · Valentin I. Zakharov🇷🇺

    We show that the Weyl (trace) anomaly gives rise to a new non-dissipative vector current in accelerated relativistic fluids. The anomaly uniquely fixes the second-order transport coefficient governing the coupling between the electromagnetic field and the fluid acceleration. We derive this result by extending hydrodynamic anomaly matching to include the trace anomaly, and independently reproduce it in boundary quantum field theory by treating the Rindler horizon of an accelerated observer as an effective boundary. From the boundary perspective, the electric- and magnetic-field sectors correspond to screening and vacuum magnetization effects near the boundary. In the local rest frame, the electric-field contribution induces an additional charge density, while the magnetic-field contribution generates a transverse current with a Nernst-like, more generally thermomagnetic Hall-like, tensor structure. Our results reveal a new class of anomaly-induced transport governed by the trace anomaly.

    hep-thhep-phnucl-th1 citation
  11. 11

    Hard Probes in Ultraperipheral Collisions at LHCb

    Krista Smith (on behalf of the LHCb Collaboration)🇰🇷

    Measurements of quarkonia production in peripheral and ultraperipheral heavy-ion collisions are sensitive to photon-photon and photon-nucleus interactions, the partonic structure of nuclei, and the mechanisms of vector-meson production. In this contribution, quarkonium measurements with the highest precision currently accessible will be compared with the latest theoretical models. Additionally, new studies of and vector meson production at forward rapidity will be presented and contrasted with other experimental results. Future UPC measurements with the upgraded LHCb detector in Run 3 will also be discussed.

    nucl-exnucl-thEPJ Web Conf.(2026)·0 citations
  12. 12

    Selected Topics in Quark-Hadron Physics: From Scalar Nonets to Topological Glueballs

    Chihiro Sasaki🇵🇱

    This contribution reviews recent progress in the low-lying scalar mesons and glueballs. We propose a new classification for the scalar nonet that includes and as the lowest states, while we identify as a primary glueball candidate. We demonstrate that the production yields of these states in heavy-ion collisions are mutually consistent across statistical, coalescence, and S-matrix frameworks. To investigate their internal structure, we move beyond standard phenomenology by describing glueballs as topological solitons. This approach yields an energy spectrum in excellent agreement with lattice QCD and experimental data, while interpreting as a tightly bound glueballonium to explain its anomalously long lifetime. This non-perturbative framework provides a predictive basis for the future experimental verification of exotic scalar states.

    hep-phnucl-thActa Phys.Polon.B(2026)·0 citations
  13. 13

    Non-perturbative heavy quark diffusion coefficients in arbitrarily magnetized quark-gluon plasma

    Debarshi Dey🇨🇳 · Aritra Bandyopadhyay🇵🇱 · Yifeng Sun🇨🇳 · Santosh K. Das🇮🇳

    Heavy quark (HQ) momentum () and spatial diffusion () coefficients are computed in a non-perturbative thermal QCD medium in the presence of a background magnetic field of arbitrary strength. Both perturbative and non-perturbative effects are incorporated via the in-medium HQ potential, obtained from the resummed gluon propagator. We find that the momentum diffusion coefficients become anisotropic even in the static heavy quark limit, with the magnetic field direction defining the axis of anisotropy. This anisotropy originates from restrictions on longitudinal momentum diffusion in the gluon spectral function, and naturally leads to two spatial diffusion coefficients (, ). Non-perturbative effects are found to be dominant at low temperatures. These results provide a more consistent input for Langevin based calculations of the heavy quark directed flow at RHIC and LHC energies.

    hep-phnucl-thPLB(2026)·0 citations
  14. 14

    On the Two -Factors in the Small- Shockwave Formalism

    Yuri V. Kovchegov🇺🇸 · M. Gabriel Santiago🇺🇸 · Huachen Sun🇺🇸

    There are two -factors frequently used in the phenomenology of exclusive processes at small values of the Bjorken variable. One -factor takes into account the effects of non-zero longitudinal momentum transfer, which is assumed to be zero in the dipole scattering amplitude. Another -factor accounts for the real part of the elastic scattering amplitude which is often neglected, with the standard dipole scattering amplitude giving only the imaginary part of the elastic amplitude. In this work we present two new theoretical developments aimed at eliminating the need for the two -factors. We argue that the -factors can be replaced by (i) modifying the argument of the dipole scattering amplitude and by (ii) augmenting the initial conditions for its non-linear small- evolution. Specifically, we show that to account for the effects of non-zero skewness , one has to replace the rapidity argument of the eikonal dipole amplitude and the odderon dipole amplitude by . The prescription applies to the elastic scattering cross sections, as well as for calculations of the Generalized Parton Distributions and Generalized Transverse Momentum Dependent parton distributions at small and at small but non-zero skewness . We also show that the real part of the scattering amplitude, proportional to Im~, which is intimately connected to the signature factor of the amplitude, can be accounted for by a more careful evaluation of the initial condition for the evolution and by writing the non-linear evolution equation in an integral form. One can similarly construct Im~ for the odd-signature odderon amplitude. We hope that future implementation of our prescriptions presented here will eliminate the need for both phenomenological -factors.

    hep-phnucl-th4 citations

Affiliations

first authorsco-authorsvia INSPIRE