PaperPanorama

Nuclear Theory·nucl-th

Thursday·December 4, 2025

7 papers4 primary·3 cross-listed

  1. 05

    Effective Field Theory Perspective On King Non-linearity

    Benoît Assi🇺🇸 · Sam Carey🇺🇸 · Sebastian Jäger🇬🇧 · Gabriel Lee🇨🇦 · Gil Paz🇺🇸 · Gilad Perez🇮🇱 · Jure Zupan🇺🇸

    Precision spectroscopic measurements of isotope shifts have recently reached a high level of accuracy. Tests of King non-linearity (NL) along isotope chains have been proposed as a tool to search for fifth-force mediators. At the same time, these tests can potentially teach us about the structure of heavy nuclei at unprecedented precision, where King NL has already been observed in several systems. A robust interpretation of the existing data, however, is hampered by incomplete control over the Standard Model (SM) contributions. We develop a systematic effective field theory framework, matching the SM onto scalar non-relativistic QED in the infinite nuclear mass limit and then onto quantum-mechanical potentials. This approach organizes all nuclear effects into a small set of Wilson coefficients and cleanly separates short- and long-distance physics. We show that the commonly used treatment of the term needs to be reconsidered, as it arises only at second-order in perturbation theory, and we derive the long-range potential from nuclear polarizability. Applying the framework to hydrogen-like systems, we provide a transparent classification of SM sources of King NL relevant for current and future isotope-shift experiments. The formalism can be applied to learn about the shape of the heavy scalar nuclei at a higher level of precision and detail than what was previously attainable.

    hep-phnucl-thphysics.atom-ph1 citation
  2. 06

    Real-time evolution of critical modes in the QCD phase diagram

    Yang-yang Tan🇨🇳 · Shi Yin🇩🇪 · Yong-rui Chen🇩🇪 · Chuang Huang🇩🇪 · Wei-jie Fu🇨🇳

    A QCD-assisted relaxation dynamic model for the critical mode of the critical end point (CEP) in the QCD phase diagram is developed, which allows us to investigate the critical slowing down effect quantitatively in the QCD phase diagram, especially in the proximity of the CEP, without any phenomenological parameters. The relaxation time from nonequilibrium to equilibrium in the QCD phase diagram is extracted from the Langevin simulations of the QCD-assisted relaxation dynamic model. It is found that in a narrow region along the phase boundary radiated from the CEP, the relaxation time is enhanced significantly. Outside this narrow region, the relaxation time drops drastically, which implies that the dynamic critical region is small in the QCD phase diagram. We also find that the effects of critical slowing down are mild on the chemical freeze-out curves.

    hep-phnucl-thPRD(2026)·8 citations
  3. 07

    Kinetic Mixing and Axial Charges in the Parity-Doublet Model

    Christian Kummer🇩🇪 · Stefan Leupold🇸🇪 · Lorenz von Smekal🇩🇪

    The standard parity doublet model with its mass-mixing mechanism fails to describe the axial charge of the nucleon. While in the original Gell-Mann--Levy model, which reproduces the Adler-Bell-Jackiw anomaly of QCD, in the presence of a chirally invariant baryon mass the mass mixing leads to whereas phenomenologically it is about 1.28. We propose to remedy this problem by introducing kinetic-mixing terms corresponding to meson-baryon derivative couplings, similar in spirit to the two-mixing-angle scenario of the - mixing. This extended parity doublet model contains five parameters in the effective baryonic Lagrangian. Three of them can be determined by using the empirical results for the axial charge of the nucleon together with the masses of the nucleon and its parity partner, the resonance. We discuss various options how to determine the remaining parameters, touching upon the mass of both parity partners if the chiral condensate is put to zero; the mass of the nucleon in the chiral limit; and the values of meson-baryon coupling constants related to the decays of the resonance to pion-nucleon and sigma-nucleon.

    hep-phnucl-thPRD(2026)·3 citations

Affiliations

first authorsco-authorsvia INSPIRE