PaperPanorama

Nuclear Theory·nucl-th

Thursday·August 13, 2026

13 papers9 primary·4 cross-listed

  1. 10

    Particle Production, Equilibration, and Quantum Recurrences from Classical Fields

    Iván Cuntín🇪🇸 · Wenyang Qian🇪🇸 · Bin Wu🇪🇸

    We investigate particle production from classical fields, a phenomenon central to the pre-equilibrium dynamics of relativistic heavy-ion collisions and the reheating epoch of the early Universe. Using lattice theory as a proof of principle, we show that this problem is naturally amenable to quantum computation, providing a first-principles framework for nonequilibrium quantum-field dynamics beyond existing approximations. We perform simulations on small spatial lattices, exhausting our available classical computational resources while maintaining a direct mapping to future quantum-computing implementations. We find that particle production is accompanied by equilibration of observables, including the field expectation value, occupation-number distribution, and pressure. The observed equilibration persists for timescales several times longer than the initial equilibration time before the observables resume oscillatory behavior associated with quantum Poincaré recurrences. Our results establish a route toward first-principles studies of equilibration in nonequilibrium quantum field theory and provide insight into the search for the smallest possible locally equilibrated quark-gluon systems at hadron colliders.

    hep-phhep-latnucl-thquant-ph0 citations
  2. 11

    Physics of the Electron-Ion Collider in China

    Bo-Wen Xiao🇨🇳 · Yuxiang Zhao🇨🇳 · Jian Zhou🇨🇳

    The Electron-Ion Collider in China (EicC), a cutting-edge facility under development, aims to unveil the internal structure of nucleons and nuclei by leveraging collisions of high-intensity polarized electrons and ions (polarized protons, polarized deuterons, polarized He, and unpolarized heavy ions up to Uranium) at center-of-mass energies of 15-20 GeV and luminosity of (2-4)cms. Its primary physics objectives include 3D tomography of nucleon spin and momentum structure, fundamental questions regarding the origin of nucleon mass, partonic structure of nuclei and parton interactions with the nuclear environment, and exploration of exotic hadronic states. In this paper, we review the physics potential of the EicC and highlight its unique capabilities for advancing precision nucleon structure studies by combining its specialized kinematic coverage and high luminosity. Since traditional topics like 3D nucleon structure have already been well-covered by several extensive reviews, we have deliberately dedicated significant space to recent progress in nucleon mass decomposition, nucleon energy-energy correlation, quantum information, and artificial intelligence applications in high-energy nuclear physics, which have been emerging rapidly and attracted a tremendous amount of attention in the community.

    hep-phhep-exnucl-exnucl-thPPNP(2026)·1 citation
  3. 12

    Photon emission from rotating plasmas: a generalized McLerran-Toimela formula and the onset of superradiance

    Kirill Tuchin🇺🇸

    The photon emission and absorption spectra of a plasma rotating with constant angular velocity are derived in terms of the spectral function of the current--current correlator. In contrast to the non-rotating case, the leading contribution arises already at one-loop order. The photon emission spectrum and its elliptic flow are calculated for a rotating quark--gluon plasma and compared with the leading two-loop result for a non-rotating plasma. The rotating plasma is found to emit significantly more soft photons than the non-rotating one. An analysis of the emission and absorption of cylindrical waves indicates that photons with energy and azimuthal quantum number satisfying are emitted at a higher rate than they are absorbed, thereby exhibiting the phenomenon of superradiance. It is further argued that these superradiant modes induce an instability of the magnetic field that is generated concurrently with the plasma in relativistic heavy-ion collisions.

    hep-phnucl-th0 citations
  4. 13

    Excited states of Nd studied via the NdNd reaction and the observation of possible low-spin two-phonon octupole states at

    A.L. Conley · M. Spieker · R. Aggarwal · L.T. Baby · J. Davis · J. Esparza · I. Hay · B. Kelly · T. Kirk · M.I. Khawaja · R. Mahajan · M. Mestayer and 6 other authors

    We report new data from a NdNd experiment performed at the John D. Fox Accelerator Laboratory of Florida State University. In total, 54 excited states of Nd were observed up to an excitation energy of 3500 keV. In this work, we focus on states and their band members. In contrast to previous work, the band is proposed as the candidate for the two-phonon octupole vibrational band. Supporting IBM-1 calculations are presented. To test the robustness of the IBM calculations, several observables were interrogated and are discussed in this publication. In addition, we make the case that neither the nor the states of the other isotones are likely good candidates for two-phonon octupole states. Based on our new data for Nd, we propose candidates in Sm and Gd. Using available -decay data for states with moderate spins in the yrast sequence and a comparison to IBM calculations, we also show how the staggering of the ratios in the yrast sequence can possibly be used to probe the appearance of bands with multiple octupole phonons.

    nucl-exnucl-thPRC(2026)·0 citations

Affiliations

first authorsco-authorsvia INSPIRE