PaperPanorama

Nuclear Theory·nucl-th

Monday·July 14, 2025

7 papers4 primary·3 cross-listed

  1. 05

    Chiral and deconfinement transitions in spin-polarized quark matter

    Ricardo L. S. Farias🇧🇷 · William R. Tavares🇧🇷

    We investigate the influence of spin polarization in strongly interacting matter by introducing a finite spin potential, , which effectively controls the spin density of the system without requiring rotation or specific boundary conditions. Inspired by recent lattice QCD simulations that incorporated such a potential, we implement this approach within an effective QCD framework. Our results show that increasing spin polarization leads to a simultaneous decrease in both the chiral and deconfinement restoration temperatures. The resulting phase structure is qualitatively consistent with lattice findings, and notably, we observe the emergence of a first-order chiral phase transition at low temperature. These results suggest that spin-polarized environments can significantly impact the QCD phase diagram and offer a controlled route for studying spin effects in hot and dense matter.

    hep-phhep-lathep-thnucl-thPRD(2025)·5 citations
  2. 06

    Hadron-Hadron Interactions from Lattice QCD: Theory meets Experiments

    Tetsuo Hatsuda🇯🇵

    We summarize recent developments in the study of hadron-hadron interactions using lattice QCD near the physical pion mass ( MeV), based on the HAL QCD method and its connection to experimental data. In particular, we focus on several key interaction channels shown below. Also, we examine the two-pion exchange (TPE) mechanism, which governs the long-range behavior of interactions between flavor-singlet hadrons, as well as between nucleons and flavor-singlet hadrons.

    hep-phhep-latnucl-thPoS(2025)·3 citations
  3. 07

    Spectroscopic and femtoscopic insights into vector-baryon interactions in the strangeness sector

    P. Encarnación🇪🇸 · M. Albaladejo🇪🇸 · A. Feijoo🇪🇸 · J. Nieves🇪🇸

    We revisit the strangeness sector of the interaction between vector mesons of the nonet and ground state baryons (), within the unitary coupled-channel hidden gauge formalism. We adopt a renormalization scheme that induces a reasonable short-distance behavior of the two-hadron wave functions, which is the major limitation of femtoscopy techniques at this time. We perform an exhaustive spectroscopy study, implementing different improvements and considerations, and find compatibilities between the poles extracted from the present approach, and some of the states listed in the Review of Particle Physics. Finally, we predict several correlation functions (CFs) associated with various meson-baryon pairs in this sector, paying special attention to the distinctive and clear signatures produced by the dynamically generated states. To obtain realistic estimates for the CFs, we have calculated the production weights using the Thermal-FIST package. Such studies will shed light into the odd-parity and hadron spectra, up to 2 GeV, and will open the strategy to improve effective field theories by using low-energy constants fitted to femtoscopy data.

    hep-phnucl-thEPJC(2025)·5 citations

Affiliations

first authorsco-authorsvia INSPIRE