PaperPanorama

HEP Phenomenology·hep-ph

Wed·Apr 9, 2025

30 papers21 primary·9 cross-listed·reconstructed*

  1. 01*

    Dark photons from dineutron decays in neutron stars

    Yongliang Hao🇨🇳 · Zhenwei Chen🇨🇳

    We focus on a novel baryon-number () violating process within neutron stars, where two neutrons convert into two dark photons () via new Higgs-like scalar bosons. This process is believed to be greatly suppressed at low energies but could be highly amplified in a dense neutron environment like neutron stars. The process could give rise to non-trivial effects that are distinct from similar processes in previous studies and could alter the properties of neutron stars, such as orbital periods, collapse thresholds, stability conditions, cooling rates, gravitational wave emissions, etc. The emitted dark photons may serve as dark-matter candidates and exhibit special red-shifted energy spectra mainly linked to the compactness of the neutron star. We point out that the dark photons emitted from neutron stars may yield detectable signals in future experiments. We also show that the precision pulsar-timing data provides a powerful tool to constrain the parameter space of new-physics models. The study of the process, which combines astronomical observations and particle physics models together, may open new windows into the detection of the -violating effects and may also provide new insights on the study of dark matter.

    hep-phPRD(2025)·2 citations
  2. 02*

    Photon self-interaction through gravitons and axions

    Ahmad Hoseinpour🇮🇷 · Moslem Zarei🇮🇷 · Mehdi Abdi🇮🇷

    In this work, we propose to employ the concept of photon self-interaction for axion detection. In particular, we derive the interaction Hamiltonian for photons via axions in a ring cavity. We show that when the incoming photons are considered in plane-wave basis, the interaction vanishes. However, when the realistic case of photon wavepackets are assumed, a self-interaction whose strength is proportional to the size of the wavepacket and the cavity length exists. Under specific conditions, we find that the axion-mediated interaction dominates the gravitationally induced self-interaction. We discuss the implications of this setup for axion detection, focusing on the range of axion mass, for which the best accuracy of coupling constants is constrained in some cases to .

    hep-phquant-phEPJC(2025)·0 citations
  3. 03*

    Vector-like tops from first generation quarks: the role of width and coupling chiralities in same-charge production at the LHC

    S. Moretti🇬🇧 · L. Panizzi🇮🇹 · L. Shang🇨🇳

    In this paper, we tension the scope of the production process against that of the same-charge one in searching for Vector-Like Quarks (VLQs) with electromagnetic charge at the Large Hadron Collider (LHC). The study is conducted by considering a simplified model in which such new states couple exclusively to Standard Model quarks of the first generation through and currents. We consider both left-handed or right-handed dominant chiralities, representative of singlets or doublets, and the total widths are allowed to reach large values relatively to the VLQ masses. By deconstructing the signal into all its components, we assess current and projected constraints, emphasize the role of interference terms and isolate peculiar features which can be used for dedicated searches at the LHC or future colliders.

    hep-phJHEP(2025)·3 citations
  4. 04*

    Hyperons and 's in rotating protoneutron stars: Global properties

    Franciele M. da Silva🇧🇷 · Adamu Issifu🇧🇷 · Luis C. N. Santos🇧🇷 · Tobias Frederico🇧🇷 · Débora P. Menezes🇧🇷

    Rotation plays an important role in the evolution of most types of stars, in particular, it can have a strong influence on the evolution of a newly born proto-neutron star. In this study, we investigate the effects of rotation on four snapshots of the evolution of proto-neutron stars with hyperons and -resonances in their cores, from birth as neutrino-rich objects to maturity as cold, catalyzed neutron stars. We focus on the effects of uniform rotation on the macroscopic structure of the star at three rotational frequencies -- 346.53 Hz, 716 Hz, and the Kepler frequency. Our investigation indicates that the impact of rotation at frequencies of ~Hz and ~Hz causes minor changes in the maximum gravitational mass but leads to significant changes in the stellar radius, particularly for stars with masses smaller than ~\msun. However, we observe drastic changes in the star's mass and radius when considering the Kepler frequency. In addition, we investigate other relevant characteristics of the rotating proto-neutron stars as they evolve such as the moment of inertia, compactness, central temperature, and Kerr parameter. Our results suggest that the inclusion of new degrees of freedom in the stellar core lead the star to be more sensitive to rotational dynamics, owing to an increase in compactness, a decrease in the central temperature, and a decrease in the moment of inertia.

    hep-phastro-ph.SRPRD(2025)·8 citations
  5. 05*

    Exploring the exclusive decay with light-cone sum rules

    Yin-Long Yang🇨🇳 · Ya-Lin Song🇨🇳 · Fang-Ping Peng🇨🇳 · Hai-Bing Fu🇨🇳 · Tao Zhong🇨🇳 · Samee Ullah🇨🇳

    In this paper, we calculate the Cabibbo-Kobayashi-Maskawa matrix element by the semileptonic decay . For the transition form factors (TFFs) , , and of , we employ the QCD light-cone sum rules method for calculation, and by constructing the correlation function using left-handed chiral current, we make the -order twist-2 light-cone distribution amplitudes (LCDA) dominate the contribution, in which the twist-2 LCDA is constructed by the light-cone harmonic oscillator model. Then, we obtain , , and at the large recoil region. Two important ratios of TFFs are and . After extrapolating TFFs to the whole physical region by a simplified -series expansion, we obtain the differential decay width and branching fraction , which show good agreement with \textit{BABAR} and Belle Collaborations. Finally, we extract the by using the result from the \textit{BABAR} Collaboration, which leads to .

    hep-phPRD(2025)·3 citations
  6. 06*

    Mass spectrum of S-wave mesons in the relativistic independent quark model

    Lopamudra Nayak🇮🇳 · Sonali Patnaik🇮🇳 · Divyajyoti Pandey🇮🇳 · Sanjay Kumar Swain🇮🇳

    The confining strength or model parameters and constituent quark masses are reparametrized for predicting the ground state meson masses. We analyzed these from the hyperfine splitting of -wave heavy-flavored, heavy-light and light (except non-strange) mesons in the framework of a relativistic independent quark (RIQ) model with one gluon exchange and centre-of-mass correction. These mesons with spin parity and , the masses obtained are in accordance with the experimental physical masses. The results will serve as good complementary tools in further study of hadron dynamics and will behave as a foundation for the higher excited and exotic states of hadrons.

    hep-ph1 citation
  7. 07*

    Reflections on Chiral Symmetry within QCD

    Anthony W Thomas🇦🇺

    That chiral symmetry is a crucial feature of the strong force was realized before the discovery of Quantum Chromodynamics. However, the full power it exerts on the structure of the nucleon became apparent only afterwards. We present a high-level and somewhat personal overview of its role in almost every aspect of proton structure, from its mass and spin to the asymmetry of its antimatter content and its strange quark content. The lessons learned from studying the proton are also vital with respect to the modern challenge of the nature of baryon excited states.

    hep-phnucl-thSymmetry(2025)·5 citations
  8. 08*

    Higgs alignment limits in the type-II 2HDM and the MSSM with explicit CP-violation

    M. N. Dubinin🇷🇺 · E. Yu. Fedotova🇷🇺

    For the general two-Higgs doublet model with Yukawa sector of type II (type II 2HDM), the Higgs alignment limit conditions are obtained for the neutral Higgs bosons with indefinite CP-parity or , based on the symbolic results relating the elements of the mixing matrix to the masses of the Higgs bosons and the mixing angles. The results are valid up to dimension-six operators in the decomposition of the effective Higgs potential. Within the framework of the obtained Higgs alignment conditions, the possibility of the existence of light scalars is discussed. Within the Minimal Supersymmetric Standard Model (MSSM) framework, four benchmark scenarios are proposed. It is shown that two of them predict phenomenologically distinguishable CP-violating interactions of the Higgs boson with up-fermions.

    hep-ph1 citation
  9. 09*

    Proper constituent gluon mass as the final piece to construct hybrid mesons

    Zi-Xuan Ma🇨🇳 · Qi Huang · Rui Chen🇨🇳 · Li-Ming Wang🇨🇳 · Xiao-Huang Hu🇨🇳 · Yue Tan🇨🇳 · Jun He🇨🇳 · Hong-Xia Huang

    In this letter, we propose that a proper constituent gluon mass =450 MeV can be applied to identify the hybrids composed of quarks and gluons. By investigating the spectra and decay widths of the light hybrids with , we find the and may not be explained as hybrids, simultaneously, and the observed by BESIII may not be a hybrid. In addition, we predict an existence of a hybrid , which can be verified by searching the channel. Moreover, we suggest the and as the golden channels to search for an isospin-0 and an isospin- hybrids, respectively.

    hep-phPRD(2025)·6 citations
  10. 10*

    A high-resolution imaging of the collinear substructure of the proton

    Giacomo Magni🇳🇱

    Accurate Standard Model predictions of proton-proton collisions are essential for interpreting the current and forthcoming experimental measurements from high-energy colliders. The quest for physics beyond the Standard Model is in fact strongly related to a reliable determination of systematic uncertainties, among which the theoretical ones have nowadays become a significant component. In particular, an important role is played by the universal Parton Distribution Functions (PDFs). This thesis presents a collection of studies aimed at improving the accuracy and precision of collinear PDF determinations. By employing the NNPDF methodology, we present recent polarized and unpolarized PDF fits including higher order QCD corrections and theoretical uncertainties. Additionally, we examine the presence of non-vanishing intrinsic charm and its phenomenological implications.

    hep-ph1 citation
  11. 11*

    Scalar-assisted magnetogenesis during the radiation-dominated epoch

    Alexander Ganz🇩🇪 · Chunshan Lin🇵🇱 · Mian Zhu🇨🇳

    We propose a novel mechanism to generate primordial magnetic fields (PMFs) strong enough to explain the observed cosmic magnetic fields. We employ a scalar field charged under U(1) gauge symmetry with a non-trivial VEV to provide an effective mass term to the EM field and thus break its conformal invariance. The primordial magneto-genesis takes place in the radiation dominated (RD) epoch, after the electroweak symmetry breaking (EWSB) phase. As a result, our mechanism is naturally free from the over-production of electric fields due to high conductivity in the RD epoch, and the baryon isocurvature problem which takes place only if magneto-genesis happens before the ESWB phase. In addition, we find that a significant amount of PMFs can be generated when the scalar field experiences a tachyonic phase. In this case, the scalar field is light and weakly coupled and has negligible energy density compared to the cold dark matter, hence the strong coupling problem and the back-reaction problem are also absent. Therefore, our model is free from the above-mentioned problems that frequently appear in other primordial magneto-genesis scenarios.

    hep-phastro-ph.COgr-qcPRD(2025)·0 citations
  12. 12*

    Notes on color reductions and traces

    Oliver Schnetz🇩🇪

    We present efficient algorithms to calculate the color factors for the gauge group and to evaluate traces. The aim of these notes is to give a self-contained, proved account of the basic results with particular emphasis on color reductions. We fine tune existing algorithms to make calculations at high loop orders possible.

    hep-phhep-thmath-phmath.MP0 citations
  13. 13*

    Leptophilic ALPs in Laboratory Experiments

    Alexander Eberhart🇩🇪 · Marco Fedele🇪🇸 · Felix Kahlhoefer🇩🇪 · Eike Ravensburg🇸🇪 · Robert Ziegler🇩🇪

    We study the collider phenomenology of leptophilic axion-like particles (ALPs), i.e. pseudoscalar particles that couple only to charged leptons. Loops of charged leptons induce effective interactions of the ALPs with photons, which depend on the momenta of the interacting particles and differ between pseudoscalar and derivative lepton couplings. We systematically discuss the form of the interaction with photons for general external momenta and identify the regimes when it can be safely approximated by an effective coupling constant. We use these results to derive novel constraints from LEP and calculate state-of-the-art limits from E137 and NA64 for four different scenarios, in which the ALPs couple either to a single lepton generation or universally to all, for both pseudoscalar and derivative lepton couplings. We collect complementary bounds from astrophysics, flavour, and other laboratory experiments to chart the allowed parameter space of leptophilic ALPs in the MeV-GeV mass range.

    hep-phhep-exJHEP(2025)·23 citations
  14. 14*

    Generalised Symmetries in Particle Physics

    Joe Davighi🇨🇭

    In this talk I review various notions of generalised global symmetry: higher-form, higher-group, and non-invertible symmetry. All these notions have had profound impact on quantum field theory research in the last decade. I highlight various applications of these new symmetries in particle physics, focussing on theories beyond the Standard Model. Areas touched upon include axions, gauge unification, dark matter, neutrino masses, and flavour hierarchies.

    hep-phhep-thPoS(2025)·7 citations
  15. 15*

    Higgs trilinear coupling in the standard model effective field theory at the high luminosity LHC and the FCC-ee

    Jaco ter Hoeve🇬🇧 · Luca Mantani🇪🇸 · Juan Rojo🇳🇱 · Alejo N. Rossia🇮🇹 · Eleni Vryonidou🇬🇧

    Motivated by the updated HL-LHC projections for Higgs pair production from ATLAS and CMS and by the release of the FCC-ee Feasibility Study, we critically revisit the sensitivity of the global SMEFT analysis to deformations of the Higgs self-coupling modifier . To this end, we quantify the impact of SMEFT operators modifying double Higgs production at the LHC and single Higgs production, including loop corrections, at the FCC-ee, and include Renormalisation Group Evolution throughout. We demonstrate that significantly improving on the legacy HL-LHC constraints on at the FCC-ee is not possible without the GeV run; that individual and marginalised determinations are similar at the HL-LHC while differing by up to a factor 3 at the FCC-ee; and that quadratic EFT corrections cannot be neglected. Overall, the combination of HL-LHC and FCC-ee data offers unique potential to pin down the Higgs self-coupling with precision.

    hep-phPRD(2025)·20 citations
  16. 16*

    Consistency Relation for Fixed Point Dynamics

    Oleg Antipin🇭🇷 · Alan Pinoy🇧🇪 · Francesco Sannino🇮🇹 · Shahram Vatani🇧🇪

    We gain insight on the fixed point dynamics of dimensional quantum field theories by exploiting the critical behavior of the sister theories. To this end we first derive a self-consistent relation between the scaling exponents and the associated dimensional beta functions. We then demonstrate that to account for an interacting fixed point in the original theory the related scaling exponent must be multi-valued in . We elucidate our findings by discussing several examples such as the QCD Banks-Zaks infrared fixed point, QCD at large number of flavors, as well as the O(N) model in four dimensions. For the latter, we show that although the corrections prevent the reconstruction of the renormalization group flow, this is possible when adding the contributions.

    hep-phhep-thEPJC(2026)·1 citation
  17. 17*

    Hadronic molecules and multiquark states

    C. Hanhart🇩🇪

    In this text different theoretical approaches towards multi-quark states are introduced, namely hadrocharmonia, compact tetraquarks and hadronic molecules. The predictions derived from either of them are contrasted with current and possible future observations. The focus is on doubly heavy systems, but singly heavy and light systems are mentioned briefly as well.

    hep-phhep-ex20 citations
  18. 18*

    Two-Loop Renormalization of a Chiral Gauge Theory in Dimensional Regularization with Non-Anticommuting

    Paul Kühler🇩🇪 · Dominik Stöckinger🇩🇪

    Higher order calculations in chiral gauge theories such as the Electroweak Standard Model require a sound treatment of the notoriously problematic -matrix in Dimensional Regularization (DReg). In the all-order consistent BMHV scheme anticommutativity has to be sacrificed, resulting in spurious breakings of BRST invariance, the restoration of which necessitates finite, symmetry-restoring counterterms. Following recent advances in successfully applying this scheme to multi-loop calculations for Abelian models, we shall here present the first complete non-Abelian two-loop result for the case of , which is of particular interest to the Standard Model. We provide the complete list of finite, two-loop symmetry restoring counterterms and discuss intricacies of the non-Abelian implementation. Except for one novel term, the finite counterterm action exhibits the same structure as at one-loop order.

    hep-phhep-thJHEP(2025)·7 citations
  19. 19*

    Doubly charmed hexaquarks in the diquark picture

    Hong-Tao An🇨🇳 · Si-Qiang Luo🇨🇳 · Xiang Liu🇨🇳

    We investigate doubly charmed hexaquark states within the diquark picture, by employing the constituent quark model and the quark-interchange model as our theoretical frameworks. Using the Gaussian expansion method, we systematically study these states, with calculating various properties such as mass spectra, internal contributions of each Hamiltonian component, root-mean-square radii, and two-body strong decay widths. Our analysis of the mass spectra reveals no stable state in this system. Furthermore, the root-mean-square radii suggest that the doubly charmed hexaquark states exhibit a compact configuration. By examining the decay widths, we identify potentially detectable states and their primary decay channels within each subsystem. Despite the large decay phase space, we still find narrow states with total widths of less than 10 MeV. This study provides a theoretical foundation for understanding the structures and interactions of doubly charmed hexaquark states and offers valuable insights for future experimental searches.

    hep-phhep-exPRD(2025)·9 citations
  20. 20*

    The two-loop Higgs impact factor

    Vittorio Del Duca🇮🇹 · Giulio Falcioni🇨🇭

    In the HEFT, we consider the Regge limit of the two-loop amplitudes for Higgs boson production in association with a jet, expanded to NNLL accuracy. We discuss the issue of the Regge cuts versus poles in this context, showing that the former cannot contribute through three loops, due to the simplicity of the colour structure of the amplitudes. Finally, we determine for the first time the Higgs impact factor at two-loop accuracy.

    hep-phJHEP(2025)·10 citations
  21. 21*

    Entanglement and pair production in intense electromagnetic fields

    S. Tang🇨🇳 · B. M. Dillon🇮🇪 · B. King🇬🇧

    We investigate the spin correlations between electron-positron pairs created from a photon when it scatters in a high-intensity laser pulse via the nonlinear Breit-Wheeler process. We find that the spin states of the generated electron-positron pair can exhibit strong entanglement, with the degree being sensitive to the photon energy, laser intensity, and the relative polarisation of the photon and laser pulse. Photons with a high degree of polarisation can create strongly entangled pairs, and this entanglement can be maintained in the high-intensity (non-perturbative) regime. We find that if the photons are provided by a Compton source, strongly spin-entangled electron-positron pairs can be generated with technology available today.

    hep-phPRD(2025)·7 citations
  22. 22*

    Conformal form-invariant parametrization of scalar-tensor gravity theories: A critical analysis

    Israel Quiros🇲🇽 · Amit Kumar Rao🇲🇽

    Based on the recent result that, if the masses of timelike fields are point-dependent fields themselves, the action of matter fields is conformal form-invariant in its standard form, and on the active and passive approaches to conformal transformations, we review the conformal form-invariant parametrization of scalar-tensor gravity theories. We investigate whether this parametrization is actually different from other existing parametrizations. We also check the universality of the claim that the classical physical predictions of these theories are conformal-frame invariants.

    gr-qcastro-ph.COhep-ph1 citation
  23. 23*

    First law of de Sitter thermodynamics

    G.E. Volovik🇷🇺

    The de Sitter state has a special symmetry: it is homogeneous, and its curvature is constant in space. Since all the points in the de Sitter space are equivalent, this state is described by local thermodynamics. This state has the local temperature (which is twice the Gibbons-Hawking temperature), the local entropy density, the local energy density, and also the local gravitational degrees of freedom -- the scalar curvature and the effective gravitational coupling . On the other hand, there is the cosmological horizon, which can be also characterized by the thermodynamic relations. We consider the connections between the local thermodynamics and the thermodynamics of the cosmological horizon. In particular, there is the holographic connection between the entropy density integrated over the Hubble volume and the Gibbons-Hawking entropy of the horizon, . We also consider the first law of thermodynamics in these two approaches. In the local thermodynamics, on the one hand, the first law is valid for an arbitrary volume of de Sitter space. On the other hand, the first law is also applicable to the thermodynamics of the horizon. In both cases, the temperature is the same. This consideration is extended to the contracting de Sitter with its negative entropy, .

    gr-qchep-phPisma Zh.Eksp.Teor.Fiz.(2025)·7 citations
  24. 24*

    Effects of strange molecular partners of states in reactions

    Jian-Cheng Suo🇨🇳 · Di Ben🇨🇳 · Bing-Song Zou🇨🇳

    Our previous studies revealed evidence of the strange molecular partners of states, and , in the and reactions. Motivated by the differential cross-section data for from CLAS 2010, which exhibits some bump structures at 1875, 2080 and 2270 MeV, we extend our previous analysis by investigating the effects of , , and , as strange partners of molecular states, in the reactions and . The theoretical model employed in this study utilizes an effective Lagrangian approach in the tree-level Born approximation. It contains the contributions from -channel with exchanges of , , (including the hadronic molecules with hidden strangeness), and ; -channel; -channel; and the generalized contact term. The results based on the final fitted parameters are in good agreement with all available experimental data of both cross-sections and polarization observables for and . Notably, the -channel exchanges of molecules significantly contribute to the bump structures in cross-sections for at 1900, 2080 and 2270 MeV, and show considerable coherence with contributions from -channel exchanges of general resonances to construct the overall structures of cross-sections. More abundant experiments, particularly for the reaction , are necessary to further strengthen the constraints on the theoretical models.

    nucl-thhep-phPRC(2025)·5 citations
  25. 25*

    Has ACT measured radiative corrections to the tree-level Higgs-like inflation?

    Ioannis D. Gialamas🇪🇪 · Alexandros Karam🇪🇪 · Antonio Racioppi🇪🇪 · Martti Raidal🇪🇪

    Starobinsky inflation and nonminimally coupled (NMC) Higgs inflation have been among the most favored models of the early Universe, as their predictions for the scalar spectral index and tensor-to-scalar ratio fall comfortably within the constraints set by Planck and BICEP/Keck. However, new results from the Atacama Cosmology Telescope (ACT) suggest a preference for higher values of , introducing tension with the simplest realizations of these models. In this work, being agnostic about the nature of the inflaton, we show that incorporating one-loop corrections to a quartic NMC inflationary scenario leads to a shift in the predicted value of , which brings NMC inflation into better agreement with ACT observations. The effect is even more significant when the model is formulated in the Palatini approach, where the modified field-space structure naturally enhances deviations from the metric case. These findings highlight the importance of quantum corrections and gravitational degrees of freedom in refining inflationary predictions in light of new data.

    astro-ph.COgr-qchep-phPRD(2025)·89 citations
  26. 26*

    Inclusive semileptonic decays of the meson: A first-principles lattice QCD calculation

    Alessandro De Santis🇩🇪 · Antonio Evangelista🇮🇹 · Roberto Frezzotti🇮🇹 · Giuseppe Gagliardi🇮🇹 · Paolo Gambino🇮🇹 · Marco Garofalo🇩🇪 · Christiane Franziska Groß🇩🇪 · Bartosz Kostrzewa🇩🇪 · Vittorio Lubicz🇮🇹 · Francesca Margari🇮🇹 · Marco Panero🇮🇹 · Francesco Sanfilippo🇮🇹 and 4 other authors

    We present the results of a first-principles theoretical study of the inclusive semileptonic decays of the meson. We performed a state-of-the-art lattice QCD calculation using the gauge ensembles produced by the Extended Twisted Mass Collaboration (ETMC) with dynamical light, strange and charm quarks with physical masses and employed the so-called Hansen-Lupo-Tantalo (HLT) method to extract the decay rate and the first two lepton-energy moments from the relevant Euclidean correlators. We have carefully taken into account all sources of systematic errors, including the ones associated with the continuum and infinite-volume extrapolations and with the HLT spectral reconstruction method. We obtained results in very good agreement with the currently available experimental determinations and with a total accuracy at the few-percent level, of the same order of magnitude of the experimental error. Our total error is dominated by the lattice QCD simulations statistical uncertainties and is certainly improvable. From the results presented and thoroughly discussed in this paper we conclude that it is nowadays possible to study heavy mesons inclusive semileptonic decays on the lattice at a phenomenologically relevant level of accuracy. The phenomenological implications of our physical results are the subject of a companion letter [1].

    hep-lathep-phPRD(2025)·25 citations
  27. 27*

    Inclusive semileptonic decays of the meson: Lattice QCD confronts experiments

    Alessandro De Santis🇩🇪 · Antonio Evangelista🇮🇹 · Roberto Frezzotti🇮🇹 · Giuseppe Gagliardi🇮🇹 · Paolo Gambino🇮🇹 · Marco Garofalo🇩🇪 · Christiane Franziska Groß🇩🇪 · Bartosz Kostrzewa🇩🇪 · Vittorio Lubicz🇮🇹 · Francesca Margari🇮🇹 · Marco Panero🇮🇹 · Francesco Sanfilippo🇮🇹 and 4 other authors

    We present the results of a first-principles theoretical study of the inclusive semileptonic decays of the meson. We performed a state-of-the-art lattice QCD calculation by taking into account all sources of systematic errors. A detailed discussion of our lattice calculation, demonstrating that inclusive semileptonic decays can nowadays be studied on the lattice at a phenomenologically relevant level of accuracy, is the subject of a companion paper [1]. Here we focus on the phenomenological implications of our results. Using the current best estimates of the relevant Cabibbo-Kobayashi-Maskawa (CKM) matrix elements, our theoretical predictions for the decay rate and for the first two lepton-energy moments are in very good agreement with the corresponding experimental measurements. We also argue that, while the inclusive channel is not yet competitive with the exclusive channels in the determination, the situation can be significantly improved in the near future.

    hep-lathep-phPRL(2025)·26 citations
  28. 28*

    Greedy Emulators for Nuclear Two-Body Scattering

    J. M. Maldonado · C. Drischler🇺🇸 · R. J. Furnstahl🇺🇸 · P. Mlinarić

    Applications of reduced basis method emulators are increasing in low-energy nuclear physics because they enable fast and accurate sampling of high-fidelity calculations, enabling robust uncertainty quantification. In this paper, we develop, implement, and test two model-driven emulators based on (Petrov-)Galerkin projection using the prototypical test case of two-body scattering with the Minnesota potential and a more realistic local chiral potential. The high-fidelity scattering equations are solved with the matrix Numerov method, a reformulation of the popular Numerov recurrence relation for solving special second-order differential equations as a linear system of coupled equations. A novel error estimator based on reduced-space residuals is applied to an active learning approach (a greedy algorithm) to choosing training samples ("snapshots") for the emulator and contrasted with a proper orthogonal decomposition (POD) approach. Both approaches allow for computationally efficient offline-online decompositions, but the greedy approach requires much fewer snapshot calculations. These developments set the groundwork for emulating scattering observables based on chiral nucleon-nucleon and three-nucleon interactions and optical models, where computational speed-ups are necessary for Bayesian uncertainty quantification. Our emulators and error estimators are widely applicable to linear systems.

    nucl-thhep-phnucl-exphysics.data-anPRC(2025)·17 citations
  29. 29*

    Nonlinear Tails of Gravitational Waves in Schwarzschild Black Hole Ringdown

    Alex Kehagias🇬🇷 · Antonio Riotto🇨🇭

    Schwarzschild black holes evolve toward their static configuration by emitting gravitational waves, which decay over time following a power law at fixed spatial positions. We derive this power law analytically for the second-order even gravitational perturbations, demonstrating that it is determined by the fact that the second-order source decays as the inverse square of the distance. Quadratic gravitational modes with multipole decay according to a law , in contrast to the linear Price law scaling . Consequently, nonlinear tails may persist longer than their linear counterparts.

    gr-qcastro-ph.COhep-phhep-thPRD(2025)·15 citations
  30. 30*

    Renormalization Group in far-from-equilibrium states

    Vladimir Rosenhaus🇺🇸 · Michael Smolkin🇮🇱

    We study renormalization group flows in far-from-equilibrium states. The study is made tractable by focusing on states that are spatially homogeneous, time-independent, and scale-invariant. Such states, in which mode has occupation numbers , are well known in nonlinear physics. RG flow in such states is qualitatively different from that in the vacuum -- a positive decreases the dimension of an operator, turning marginal interactions into relevant interactions. We compute one-loop beta functions. Depending on the sign of the beta function, backreaction may either cause a minor shift of the state in the IR, or completely change the nature of the state. Focusing on nearly marginal interactions, we construct an analog of the epsilon expansion and IR fixed points, with epsilon now set by the scaling of the interaction rather than the spacetime dimension. In the language of RG flow, critical-balance scaling -- which has applications in fields as varied as astrophysics and ocean waves -- corresponds to the state dynamically adjusting itself along the RG flow until the interaction becomes marginal.

    hep-thhep-phPRD(2026)·5 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.