PaperPanorama

HEP Phenomenology·hep-ph

Wed·Apr 30, 2025

24 papers14 primary·10 cross-listed·reconstructed*

  1. 01*

    Implications of the KM3NeT Ultrahigh-energy Event on Neutrino Self-interactions

    Yuxuan He🇨🇳 · Jia Liu🇨🇳 · Xiao-Ping Wang🇨🇳 · Yi-Ming Zhong🇨🇳

    Neutrino self-interactions (SI) mediated by light bosonic particles can produce characteristic spectral dips in astrophysical neutrino fluxes, thereby altering the expected energy spectrum. The high-energy astrophysical neutrino spectrum has been extensively used to probe SI models through these distinctive features. The recent detection of the ultrahigh-energy event KM3-230213A presents a new opportunity to explore SI phenomenology at extreme energies. In this work, we investigate two implications of this observation, assuming the event originates from a diffuse power-law spectrum. First, we find that SI-induced spectral distortions can mildly alleviate the tension between the KM3-230213A detection and the previous non-observation of PeV-scale neutrinos in IceCube data. Second, we derive the strongest constraints on the -flavored SI coupling strength for mediator masses around 100 MeV. Our analysis shows that neutrino telescopes can surpass existing collider bounds in this mass range. In the near future, IceCube-Gen2 is expected to significantly enhance SI sensitivity, including regions relevant to alleviating the Hubble and neutrino mass tensions.

    hep-phastro-ph.HEPRD(2026)·16 citations
  2. 02*

    To build or not to build: FCC

    Aleksander Filip Żarnecki🇵🇱

    This is my individual contribution to the discussions ongoing on the update of the European Strategy for Particle Physics. After participating in many discussions and contributing to a number of documents being prepared for the ESPP submission, I came to the conclusion that these ``official'' documents do not give the whole picture. I wanted to express my concerns about the strategy update process and the possible choice of FCC as the next flagship project at CERN. I do hope my short contribution is found relevant by those interested in the strategy update process.

    hep-phhep-ex0 citations
  3. 03*

    F-Term Hybrid Inflation, Metastable Cosmic Strings and Low Reheating in View of ACT

    C. Pallis🇬🇷

    We consider the formation of metastable cosmic strings in a left-right unified theory. The produced monopoles are diluted by a stage of F-term hybrid inflation (FHI) which is realized consistently with the SUSY breaking and a global symmetry in the context of a extension of MSSM. The hidden-sector Kaehler manifold enjoys an enhanced symmetry with the scalar curvature determined by the achievement of a SUSY-breaking de Sitter vacuum without ugly tuning. FHI turns out to be compatible with data -- including the recent ACT results --, provided that the magnitude of the emergent soft tadpole term is confined in the range TeV, and it is accompanied with the production of cosmic strings. Their dimensionless tension interprets the present observations from PTA experiments on the stochastic background of gravitational waves. The parameter of MSSM arises by appropriately adapting the Giudice-Masiero mechanism and facilitates the out-of-equilibrium decay of the saxion at a reheat temperature lower than about GeV. The SUSY mass scale turns out to lie in the PeV region.

    hep-phastro-ph.COhep-thPoS(2025)·16 citations
  4. 05*

    Quantum Computation for Jets in Heavy Ion Collisions

    Wenyang Qian🇪🇸

    Quantum computing has recently emerged as a transformative tool for investigating the real-time dynamics of jets in heavy-ion collisions, offering novel approaches to simulate non-equilibrium processes and strongly coupled phenomena that are challenging for classical methods. Here, I summarize my talk at Hard Probes 2024 at Nagasaki.

    hep-phnucl-thquant-phEPJ Web Conf.(2025)·3 citations
  5. 06*

    Power corrections to the heavy electron form factor

    Aniruddha Venkata🇩🇪

    We study the first power correction to the heavy electron form factor in QED and show that it factorizes as a derivative operator. We discuss the result in QED with no light fermions, where the first power correction can be written explicitly in terms of one-loop integrals and the anomalous magnetic moment. In the presence of light fermions, the heavy electron form factor admits a representation as a sum over matrix elements, each of which receives corrections from higher orders in perturbation theory. From this analysis, we are able to extract the next-to-leading power soft photon theorem in the limit of heavy fermion-initiated dijet events. This is a first step towards studying the heavy quark form factor in the non-abelian theory.

    hep-phJHEP(2025)·0 citations
  6. 07*

    Gravitational Form Factors and the QCD Dilaton at Large Momentum Transfer

    Claudio Corianò🇮🇹 · Stefano Lionetti🇮🇹 · Dario Melle🇮🇹 · Riccardo Tommasi🇮🇹 · Leonardo Torcellini🇮🇹

    We investigate the hard scatterings of hadronic matrix elements corresponding to hadronic gravitational form factors (GFFs) of the pion and proton using QCD factorization, applying conformal field theory (CFT) tools. These GFFs are key to understanding quark and gluon angular momentum via their connection to DVCS moments. The core object is the non-Abelian \( TJJ \) 3-point function, which shows an anomaly-induced dilaton exchange in the \( t \)-channel. We analyze quark, ghost, and gauge-fixing effects through a CFT-based decomposition and propose a parameterization useful for future DVCS studies at the Electron-Ion Collider. The dilaton interaction is interpolated by a conformal anomaly form factor, defined in the nonconformal case, which is constrained by a (dilaton) sum rule.

    hep-phPoS(2025)·1 citation
  7. 08*

    Timelike form factor for the anomalous process

    Angel S. Miramontes🇪🇸 · Gernot Eichmann🇦🇹 · Reinhard Alkofer🇦🇹

    The form factor for the anomalous process is calculated in the isospin limit for several values of the light current-quark mass (i.e., the pion mass) using Dyson-Schwinger and Bethe-Salpeter equations. Beyond a quark interaction kernel representing gluon-mediated interactions, leading beyond-rainbow-ladder effects at low energies are incorporated by back-coupling pions as explicit degrees of freedom. Building upon an earlier calculation of the quark-photon vertex that captures the branch cut associated with the two-pion threshold and the rho meson resonance, the form factor is determined for timelike Mandelstam s. In particular, predictions are made for the kinematics relevant for the Primakoff reaction studied with COMPASS/AMBER at CERN.

    hep-phhep-exnucl-thPLB(2025)·9 citations
  8. 09*

    Inelastic Antideutron Interaction with Nuclei

    E.S. Golubeva🇷🇺

    We suggest to use the intranuclear cascade model (INC) for simulation of antideutron-nucleus inelastic interaction in the region of antideutron energies of MeV/n GeV/n for a wide range of target nuclei. With the help of the model we obtain the cross-section for inelastic antideutron-nucleus interaction and compare it with the ALICE experimental data. The model is in good agreement with the available experimental data on the inelastic interaction of antideutrons with tantalum nucleus. We have created a Monte Carlo generator for simulation of inelastic interaction of antideutrons with nuclei. This generator can be useful in the preparation and analysis of experiments to search for antideutrons near the Earth.

    hep-ph0 citations
  9. 10*

    Viability of warm inflation with standard model interactions

    Rudnei O. Ramos🇧🇷 · Gabriel S. Rodrigues🇧🇷

    The minimal warm inflation scenario proposed in Ref. [1] -- featuring an axionlike inflaton coupled to Standard Model (SM) gluons via the standard interaction -- offers a compelling bridge between inflationary dynamics and SM particle content. While the model retains only the inflaton as a beyond-SM field, its original analysis relied on some approximate treatments of warm inflation's (WI) dynamics. Here, we revisit this scenario using WI2easy, a precision computational tool for WI dynamics [2], to rigorously evaluate the model's viability and full range of model's parameters compatible with the observational parameters. Overall, we find that the results of Ref. [1] hold, but with significant differences in the weak and strong dissipative regimes of WI.

    hep-phastro-ph.COgr-qchep-thPRD(2025)·21 citations
  10. 11*

    Integral of the double-emission eikonal function for a massive and a massless emitter at an arbitrary angle

    Dennis Horstmann🇩🇪 · Kirill Melnikov🇩🇪 · Ming-Ming Long🇩🇪 · Andrey Pikelner🇩🇪

    We present an analytic calculation of the integrated double-emission eikonal function of a massive and a massless emitter whose momenta are at an arbitrary angle to each other. This quantity provides one of the required ingredients for extending the nested soft-collinear subtraction scheme to processes with massive final-state particles. To calculate it, we use the standard methodology involving reverse unitarity and its extension to cases with Heaviside functions, integration-by-parts technology and reduction to master integrals, and differential equations. In addition, we also describe a semi-numerical method based on the subtraction of infra-red and collinear singularities from the eikonal function, allowing us to extract divergences of the integrated eikonal function analytically, and to derive a simple integral representation for the finite remainder.

    hep-phJHEP(2025)·2 citations
  11. 12*

    High-Precision Physics Experiments at Huizhou Large-Scale Scientific Facilities

    FengPeng An · Dong Bai · Siyuan Chen · Xurong Chen · Hongyue Duyang · Leyun Gao · Shao-Feng Ge · Jun He · Junting Huang · Zhongkui Huang · Igor Ivanov · Chen Ji and 30 other authors

    In response to the capabilities presented by the High-Intensity Heavy Ion Accelerator Facility (HIAF) and the Accelerator-Driven Subcritical System (CiADS), as well as the proposed Chinese Advanced Nuclear Physics Research Facility (CNUF), we are assembling a consortium of experts in relevant discipline--both domestically and internationally--to delineate high-precision physics experiments that leverage the state-of-the-art research environment afforded by CNUF. Our focus encompasses six primary domains of inquiry: hadron physics--including endeavors such as the super eta factory and investigations into light hadron structures; muon physics; neutrino physics; neutron physics; the testing of fundamental symmetries; and the exploration of quantum effects within nuclear physics, along with the utilization of vortex accelerators. We aim to foster a well-rounded portfolio of large, medium, and small-scale projects, thus unlocking new scientific avenues and optimizing the potential of the Huizhou large scientific facility. The aspiration for international leadership in scientific research will be a guiding principle in our strategic planning. This initiative will serve as a foundational reference for the Institute of Modern Physics in its strategic planning and goal-setting, ensuring alignment with its developmental objectives while striving to secure a competitive edge in technological advancement. Our ambition is to engage in substantive research within these realms of high-precision physics, to pursue groundbreaking discoveries, and to stimulate progress in China's nuclear physics landscape, positioning Huizhou as a preeminent global hub for advanced nuclear physics research.

    hep-phhep-exnucl-exphysics.ins-detChin.Phys.Lett.(2025)·23 citations
  12. 13*

    Alternative to Axions

    Nemanja Kaloper🇺🇸

    The CP-violating phase which arises below chiral symmetry breaking in a non-Abelian gauge theory is ``secretly" the magnetic dual of the flux of a -form gauge field. Thus the discharge of this -form flux by Schwinger production of charged membranes reduces the total CP-violating phase toward zero. This can safely restore CP symmetry to within the observational limits, , while also satisfying all limits from cosmology, when the charge and the tension of the gauge field sources are in the range.

    hep-phastro-ph.COgr-qchep-thPRD(2026)·14 citations
  13. 14*

    Neutrino-antineutrino synchrotron emission from magnetized dense quark matter

    Ritesh Ghosh🇺🇸 · Igor A. Shovkovy🇺🇸

    Using the Kadanoff-Baym formalism, we perform a detailed study of neutrino-antineutrino synchrotron emission from strongly magnetized, dense quark matter under conditions relevant to compact stars. Starting from an exact expression for the emission rate that fully accounts for Landau-level quantization of quarks, we derive an approximate formula applicable in the regime where quark chemical potentials are much larger than all other relevant energy scales. We demonstrate that the emission rate is largely controlled by a single dimensionless ratio between two low-energy scales: the Landau-level spacing at the Fermi surface, , and the temperature of the quark matter, . When the ratio approaches zero, many closely spaced Landau levels contribute to the emission, but the total rate vanishes as . In the opposite limit, where the ratio is large, the rate is dominated by transitions between adjacent levels and is exponentially suppressed due to Landau-level quantization, which limits the thermal activation of quarks near the Fermi surface. Our results show that, even in the presence of the strongest magnetic fields expected in compact stars, the synchrotron emission remains suppressed by more than 3 orders of magnitude compared to the direct Urca process. This implies that such emission is unlikely to play any substantial role in the cooling of magnetized quark stars, at least those made of unpaired quark matter phases.

    hep-phastro-ph.HEnucl-thPRD(2025)·3 citations
  14. 15*

    Application of the Holographic Equation of State for Numerical Modeling of the Evolution of Quark-Gluon Plasma

    A.V. Anufriev🇷🇺 · V.N. Kovalenko🇷🇺

    In this paper, we propose a method for numerical modeling of the nuclear matter properties within the framework of relativistic heavy-ion collisions using a holographic equation of state. Model's free parameters are calibrated using lattice results for quark masses approximating physical values and adjusted to match the Regge spectra of mesons. Numerical simulations are performed using the iEBE-MUSIC framework, which incorporates the MUSIC relativistic hydrodynamics solver. We modify the code by implementing a tabulated holographic equation of state, enabling simulations of quark-gluon plasma evolution with dynamically generated initial conditions via the 3D Monte Carlo Glauber Model. Finally, the spectra of produced hadrons are computed using a hybrid iSS+UrQMD approach at the freeze-out stage.

    nucl-thgr-qchep-phhep-thPhys.Atom.Nucl.(2026)·1 citation
  15. 16*

    Probing the quantum speed limit and entanglement in flavor oscillations of neutrino-antineutrino system in curved spacetime

    Abhishek Kumar Jha🇮🇳 · Mriganka Dutta🇮🇳 · Mayank Pathak🇮🇳 · Subhashish Banerjee🇮🇳 · Banibrata Mukhopadhyay🇮🇳

    We consider a spinning primordial black hole (PBH) described by the Kerr metric in Kerr-Schild polar coordinates. We derive an analytical expression for the four-vector gravitational potential in the underlying Hermitian Dirac Hamiltonian using these coordinates. This gravitational potential introduces an axial vector term in the Dirac equation in curved spacetime. We find that the magnitudes of the temporal and spatial components of the four-vector gravitational potential are significantly affected by the angle of the position vector of the spinor with respect to the spin axis of the PBH, its radial distance from the PBH, and the strength of the specific angular momentum of the PBH. These potentials modify the effective mass matrix of the neutrino-antineutrino system and significantly affect the transition probabilities during the flavor oscillation of the neutrino-antineutrino system. We then use the transition probability to investigate the quantum speed limit time bound ratio for the two-flavor oscillation of the neutrino-antineutrino system in curved spacetime. This helps us estimate how quickly the initial neutrino flavor state evolves over time under the influence of the gravitational field. Finally, we discuss quantum correlations such as entanglement entropy during the two-flavor oscillation of the neutrino-antineutrino system near a spinning PBH.

    gr-qcastro-ph.HEhep-phhep-th+1PRD(2025)·8 citations
  16. 17*

    Polish national input to the 2026 update of the European Strategy for Particle Physics

    K. Adamczyk🇵🇱 · B. Badełek🇵🇱 · T. Banaszkiewicz🇵🇱 · V. Batozskaya🇵🇱 · M. Bluj🇵🇱 · D. Bocian🇵🇱 · P. Bruckman de Renstrom🇵🇱 · M. Chorowski🇵🇱 · M. Chrząszcz🇵🇱 · W. Cichalewski🇨🇭 · D. Derendarz🇵🇱 · M. Dyndał🇵🇱 and 50 other authors

    The Polish high energy physics (HEP) community fully recognizes the urgent need to host at CERN a flagship project implementing a broad, long-term, and comprehensive vision of particle physics research and pursuing technological advances. Thus, we give preference and declare willingness to actively engage and participate in every aspect of the FCC project (both FCC-ee and FCC-hh), particularly accelerator development, detector construction, theoretical calculations, and physics analyses. As the e+e- Higgs Factory is the top priority for our field, the proposal to build a linear collider facility at CERN, opening up complementary physics prospects, should be considered as the second option. Polish teams declare strong support and are fully committed to contribute to the full exploitation of all aspects of the physics potential of the LHC and the HL-LHC programmes. To ensure the long-term development of particle physics, we also support the continuation of the high-field magnet research programme, as well as investigating other scenarios including, in particular, linear acceleration techniques and new acceleration technologies such as plasma acceleration, the muon collider and Gamma Factory. In addition, CERN should continue to provide support to fixed-target programmes at SPS as well as other non-collider and non-accelerator experiments at CERN. Participation in major projects conducted in and outside Europe should also be fostered. Education, communication, and outreach of particle physics are of paramount importance for the future of our field. An increased effort coordinated at the European level and resources allocated in all Member States are essential to effectively support future large-scale particle physics projects.

    hep-exhep-ph0 citations
  17. 18*

    Positive neutrino masses with DESI DR2 via matter conversion to dark energy

    S. Ahlen🇺🇸 · A. Aviles🇲🇽 · B. Cartwright🇺🇸 · K. S. Croker🇺🇸 · W. Elbers🇬🇧 · D. Farrah🇺🇸 · N. Fernandez🇺🇸 · G. Niz🇺🇸 · J. Rohlf🇺🇸 · G. Tarlé🇺🇸 · R. A. Windhorst🇺🇸 · J. Aguilar🇪🇸 and 37 other authors

    The Dark Energy Spectroscopic Instrument (DESI) is a massively parallel spectroscopic survey on the Mayall telescope at Kitt Peak, which has released measurements of baryon acoustic oscillations determined from over 14 million extragalactic targets. We combine DESI Data Release 2 with CMB datasets to search for evidence of matter conversion to dark energy (DE), focusing on a scenario mediated by stellar collapse to cosmologically-coupled black holes (CCBH). In this physical model, which has the same number of free parameters as CDM, DE production is determined by the cosmic star formation rate density (SFRD), allowing for distinct early- and late-time cosmologies. Using two SFRDs to bracket current observations, we find that the CCBH model: accurately recovers the cosmological expansion history, agrees with early-time baryon abundance measured by BBN, reduces tension with the local distance ladder, and relaxes constraints on the summed neutrino mass . For these SFRDs, we find a peaked positive (95% confidence) and respectively, in good agreement with lower limits from neutrino oscillation experiments. A peak in results from late-time baryon consumption in the CCBH scenario and is expected to be a general feature of any model that converts sufficient matter to dark energy during and after reionization.

    astro-ph.COhep-phPRL(2025)·33 citations
  18. 19*

    Challenging CDM: 5 Evidence for a Dynamical Dark Energy Late-Time Transition

    Mateus Scherer🇧🇷 · Miguel A. Sabogal🇧🇷 · Rafael C. Nunes🇧🇷 · Antonio De Felice🇯🇵

    Recently, there has been considerable debate regarding potential evidence for the dynamical nature of dark energy (DE), particularly in light of Baryon Acoustic Oscillations (BAO) measurements released by DESI survey. In this work, we propose an agnostic test that simultaneously constrains the dark energy (DE) equation of state (EoS) and probes the possibility of a transition between the quintessence and phantom regimes, or vice versa. Our initial approach is independent of physical priors, allowing the data to determine which behavior best fits the parameters. We then consider a minimally modified gravity theory known as VCDM, into which we can map our initial approximation, placing it within a theoretically stable framework. To this end, we incorporate the most up-to-date datasets available, including BAO measurements from DESI-DR2, Type Ia Supernovae from the PantheonPlus, DESY5, and Union3 samples, as well as Cosmic Microwave Background (CMB) data from Planck. Our analysis reveals strong and statistically significant evidence for a quintessence-phantom transition across various data combinations. \textit{The strongest evidence is found for Planck+DESI+DESY5, with a significance exceeding 5 in favor of a quintessence-phantom transition at }. Beyond this redshift, the EoS remains within the phantom regime, while for , it favors the quintessence regime. Despite this strong indication, \textit{we find that such transitions do not resolve the tension}

    astro-ph.COgr-qchep-phPRD(2025)·139 citations
  19. 20*

    Static horizons in cosmology

    Ida M. Rasulian🇮🇷 · Amjad Ashoorioon🇮🇷

    Although previous results have ruled out the possibility of a static event horizon in cosmology, we present black hole and white hole metrics that retain static event horizons while reproducing cosmological behavior at large distances. Using an appropriate coordinate choice, we demonstrate that a static event horizon can exist in a cosmological setting without introducing curvature invariant singularities at the horizon. The resulting metric reduces to the Schwarzschild de Sitter solution when the Hubble parameter is constant. We find that white hole metrics in an expanding universe, or black holes in a contracting universe, are significantly easier to construct, as a black hole in an expanding cosmology requires the velocity function to change sign. Consequently, this work initially examines white holes in expanding cosmologies as a foundation for subsequent analysis of black holes in expanding universes. In later sections, we investigate scenarios involving a white hole coupled with cosmological matter, as well as a white hole with both matter and a cosmological constant. Assuming the pressure component takes its cosmological value, we show that the physical radius of the apparent horizon can asymptotically approach a constant value at late times. This metric avoids pathologies such as a singular horizon in the limit of a vanishing Hubble parameter. Finally, we analyze the realistic case of a black hole embedded in pressureless cosmological matter with and without a cosmological constant and explore its properties. We specifically show that the velocity function can become zero and change sign in the vicinity of a black hole. This means we can smoothly transition from an expanding cosmological phase with a positive velocity function to a contracting black hole phase with a negative velocity function.

    gr-qcastro-ph.COhep-phhep-thPLB(2026)·2 citations
  20. 21*

    Refined Predictions for Starobinsky Inflation and Post-inflationary Constraints in Light of ACT

    Manuel Drees🇩🇪 · Yong Xu🇩🇪

    Recent measurements from the Atacama Cosmology Telescope (ACT), combined with Planck and DESI data, suggest a higher value for the spectral index . This places Starobinsky inflation at the edge of the constraints for a number of e-folds around when using the usual analytical approximations. We present refined predictions for Starobinsky inflation that go beyond the commonly used analytical approximations. By evaluating the model with these improved expressions, we show that for it remains consistent with current observational constraints at the level. Additionally, we examine the implications of the ACT results for post-inflationary reheating parameters. Specifically, we find a lower bound on the effective equation of state parameter during reheating of approximately ; this excludes purely perturbative reheating, which leads to . We also show that the reheating temperature is constrained to be , assuming . Furthermore, we find that the predictions for the spectral index and tensor-to-scalar ratio can lie within of the recent ACT constraints if the reheating temperature satisfies for .

    astro-ph.COhep-phPLB(2025)·104 citations
  21. 22*

    Elliptic leading singularities and canonical integrands

    Ekta Chaubey🇩🇪 · Vasily Sotnikov🇨🇭

    In the well-studied genus zero case, bases of integrands with integer leading singularities define Feynman integrals that automatically satisfy differential equations in canonical form. Such integrand bases can be constructed without input from the differential equations and without explicit involvement of dimensional regularization parameter . We propose a generalization of this construction to genus one geometry arising from the appearance of elliptic curves. We argue that a particular choice of algebraic one-forms of the second kind that avoids derivatives is crucial. We observe that the corresponding Feynman integrals satisfy a special form of differential equations that has not been previously reported, and that their solutions order by order in yield pure functions. We conjecture that our integrand-level construction universally leads to such differential equations.

    hep-thhep-phPRL(2025)·18 citations
  22. 23*

    Cosmic superstrings in large volume compactifications: PTAs, LISA and time-varying tension

    Anish Ghoshal🇵🇱 · Filippo Revello🇧🇪 · Gonzalo Villa🇬🇧

    The Stochastic Gravitational Wave Background (SGWB) from cosmic superstrings offers one of the few known possibilities to test String Theory within current experimental reach. However, in order to be compatible with the existing constraints, the tension of a cosmic superstring network is required to lie several orders of magnitude below the Planck scale. This is naturally realized in string compactifications where the volume of the extra dimensions is parametrically large (in string units). We estimate the GW spectrum arising from cosmic superstrings in such scenarios, providing analytical formulae as well as numerical results. Crucially, we do so within a semi-realistic string cosmology scenario, taking into account various modified cosmological epochs (such as kination or early matter domination) induced by the presence of moduli and a time-dependent string tension. We show that part of the spectrum generically lies within reach of LISA and ET, with a large class of models predicting a characteristic drop in the amplitude which may be robustly probed by LISA. The corresponding signal would encode information on the dynamics of moduli and reheating. On the other hand, the ultra-high frequency part of the spectrum can be significantly enhanced by a long, early phase of kination with time-varying tension, yielding a spectral index unique to this set-up.

    astro-ph.COhep-phhep-thJCAP(2025)·17 citations
  23. 24*

    Symmetry, entanglement, and the -matrix

    Navin McGinnis🇺🇸

    We present a general framework connecting global symmetries to the relativistic -matrix through the lens of quantum information theory. Analyzing the 2-to-2 scattering of particles of any helicity, we systematically characterize relativistic scattering amplitudes as quantum gates in the bipartite space of states with a discrete quantum number. This formalism naturally recovers and significantly extends previous results on entanglement suppression of the -matrix, providing a comprehensive approach for studying the emergence of symmetries from an information-theoretic perspective. As a central result, we show that constraining the -matrix to the span of minimally entangling operators is equivalent to realizing an emergent global symmetry.

    hep-thhep-phquant-ph28 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.