PaperPanorama

HEP Phenomenology·hep-ph

Fri·Nov 25, 2022

26 papers14 primary·12 cross-listed·reconstructed*

  1. 01*

    Model Agnostic Probes of Dark Sectors at Neutrino Experiments

    Marco Costa🇮🇹 · Rashmish K. Mishra🇺🇸 · Sonali Verma🇮🇹

    Present and upcoming neutrino experiments can have considerable sensitivity to dark sectors that interact feebly with the Standard Model. We consider dark sectors interacting with the SM through irrelevant portals that are motivated on general principles. We derive bounds on such scenarios by considering decays of dark sector excitations inside the neutrino detector, placed downstream from the target. Our approach is model agnostic and applies to a wide range of dark sector models, both strongly and weakly coupled. In this approach, the dark sector is characterized by two scales: (mass of mediators generating the portals) and (mass gap of the dark sector). At intermediate energies, far away from these scales, the theory is approximately scale-invariant. This allows the calculation of production rates independent of the threshold corrections, although some mild model-dependent assumptions are needed. We look at various dark sector production processes relevant at neutrino experiments such as meson decays, direct partonic production, and dark bremsstrahlung. We consider representative experiments from past (CHARM), present (ICARUS, NOvA, MicroBooNE), and upcoming future (DUNE-MPD), and compare their reach to existing bounds from high energy experiments (LHC and LEP) and dedicated future LLP experiments (SHiP). We find that the upcoming DUNE-MPD can probe in the TeV range, and in the 0.1-1 GeV range, covering parts of parameter space currently inaccessible in high energy experiments and fixed-target/beam-dump experiments, and is comparable to future LLP experiments. In general, future neutrino experiments can be an efficient probe of dark sectors, providing complementary as well as new reach in parameter space.

    hep-phPRD(2023)·10 citations
  2. 02*

    Locally monochromatic two-step nonlinear trident process in a plane wave

    S. Tang🇨🇳 · B. King🇬🇧

    In many-cycle plane waves at intermediate intensities, the nonlinear trident process can be well-approximated by the two sequential steps of nonlinear Compton scattering of a polarised real photon followed by its transformation into an electron-positron pair via nonlinear Breit-Wheeler pair creation. We investigate this two-step process in the intermediate intensity regime by employing the locally monochromatic approximation for each step and numerically evaluating resulting expressions. When photon polarisation is included, it is found to produce an order 10% decrease in the trident rate: the importance of polarisation increases at lower intensities, and decreases at higher intensities. Its importance persists at higher intensities in a linearly-polarised background, but disappears at high intensities in a circularly-polarised background. If the two steps are made to take place in two linearly-polarised plane wave pulses with perpendicular polarisations, the pair yield can be increased by approximately 30% compared to two plane waves with the same polarisation. It is also shown that harmonic structures in the Compton step can be passed to the pair step if the Compton edge is at an energy of the order of the threshold for linear Breit-Wheeler.

    hep-phphysics.opticsPRD(2023)·15 citations
  3. 03*

    Entropy Suppression through Quantum Interference in Electric Pulses

    Gerald V. Dunne🇺🇸 · Adrien Florio🇺🇸 · Dmitri E. Kharzeev🇺🇸

    The Schwinger process in strong electric fields creates particles and antiparticles that are entangled. The entropy of entanglement between particles and antiparticles has been found to be equal to the statistical Gibbs entropy of the produced system. Here we study the effect of quantum interference in sequences of electric pulses, and show that quantum interference suppresses the entanglement entropy of the created quantum state. This is potentially relevant to quantum-enhanced classical communications. Our results can be extended to a wide variety of two-level quantum systems.

    hep-phhep-thnucl-thquant-phPRD(2023)·8 citations
  4. 04*

    Exploring dark photons via a subfrequency laser searchin gravitational wave detectors

    M. Afif Ismail🇹🇼 · Chrisna Setyo Nugroho🇹🇼 · Henry Tsz-King Wong🇹🇼

    We propose a novel idea to detect a dark photon in gravitational wave experiments. Our setups are capable of performing the whole process of dark photon production, its decay products, and new physics signal discovery. This mini-LHC is inspired by the recent idea of dark photon detection using laser light in light shining through the wall (LSW) experiments such as ALPS II. Taking the subfrequency light emitted from the laser source as the new physics signal, we show that the sensitivity of our proposal is 2orders of magnitude better than the original idea in the LSW studies.

    hep-phPRD(2023)·11 citations
  5. 05*

    Sea-quark loop contributions to the - asymmetry in the proton

    Derek B. Leinweber🇦🇺 · Anthony W. Thomas (CSSM, University of Adelaide)🇦🇺

    QCD interactions for equal-mass fermion flavors are flavor blind. This fact is often used to state that disconnected sea-quark loop contributions are equal for and quarks in the mass symmetric case and therefore these disconnected sea-quark loop contributions cannot contribute to the well-known asymmetry in the proton. Instead, it is argued that one must look to the connected sector of lattice QCD correlation functions to find this difference. In this presentation, we note that these statements are true provided unphysical contributions in the sea-quark loop sector are included, contributions from baryons that do not appear in the physical spectrum. To respect the Pauli principle, these unphysical contributions from the disconnected sea-quark loop sector must cancel equally unphysical contributions in the connected sector. The remaining disconnected sea-quark loop contributions no longer have a balance between and . Upon considering only physically observed baryons in the loop contributions, we illustrate an important contribution from the sea-quark loop sector to that enhances the leading connected contribution by 12\%.

    hep-phhep-latnucl-thPRD(2024)·4 citations
  6. 06*

    lepton decays with production of strange scalar mesons and in the extended NJL model

    Mikhail K. Volkov🇷🇺 · K. Nurlan🇷🇺

    The branching fractions of lepton decays with the production of strange scalar mesons both in the ground and first radially excited states and are calculated in the extended chiral quark NJL model. All mesons are considered as systems. The obtained results should be considered as predictions for future experiments.

    hep-phJETP Lett.(2023)·3 citations
  7. 07*

    Two-loop QCD corrections to the helicity amplitudes with axial-vector couplings

    Thomas Gehrmann🇨🇭 · Tiziano Peraro🇮🇹 · Lorenzo Tancredi🇩🇪

    We compute the two-loop corrections to the helicity amplitudes for the coupling of a massive vector boson to a massless quark-antiquark pair and a gluon, accounting for vector and axial-vector couplings of the vector boson and distinguishing isospin non-singlet and singlet contributions. A new four-dimensional basis for the decomposition of the amplitudes into 12 invariant tensor structures is introduced. The associated form factors are then computed up to two loops in QCD using dimensional regularization. After performing renormalization and infrared subtraction, the finite parts of the renormalized non-singlet vector and axial-vector form factors are shown agree with each other, and to reproduce the previously known two-loop amplitudes. The singlet axial-vector amplitude receives a contribution from the axial anomaly from two loops onwards. This amplitude is computed for massless and massive internal quarks. Our results provide the last missing two-loop amplitudes entering the NNLO QCD corrections of vector-boson-plus-jet production at hadron colliders.

    hep-phhep-thJHEP(2023)·21 citations
  8. 08*

    Measuring the Quantum State of Dark Matter

    David J. E. Marsh🇬🇧

    I demonstrate a simple example of how the time series obtained from searches for ultralight bosonic dark matter (DM), such as the axion, can be used to determine whether it is in a coherent or incoherent quantum state. The example is essentially trivial, but I hope that explicitly addressing it provokes experimental exploration. In the standard coherent state, oscillations in the number density occur over the coherence time, , where is the particle mass and is the galactic virial velocity, leading to a reduction in the constraining power of experiments operating on timescales , due to the unknown global phase. On the other hand if the DM is incoherent then no such strong number oscillations occur, since the ensemble average over particles in different streams gives an effective phase average. If an experiment detects a signal then the coherent or incoherent nature of DM can be determined by time series analysis over the coherence time. This finding is observationally relevant for DM masses, (corresponding to coherence times between a year and 100 seconds), and can be explored by experiments including CASPEr, DMRadio, and AION. Coherence may also be measurable at higher masses in the microwave regime, but I have not explored it.

    hep-phhep-exquant-phAnnalen Phys.(2024)·13 citations
  9. 09*

    A study of relativistic corrections to decay

    Nikolay Kivel🇩🇪

    We study relativistic corrections in exclusive -wave charmonium decays into proton-antiproton final state. We calculate the NRQCD corrections to the dominant decay amplitude, which depend on the nucleon twist-3 light-cone distribution amplitudes only. It is shown that in this case the collinear factorisation is also valid beyond the leading-order approximation. Our numerical estimates show that relativistic correction of relative order provides large numerical impact.

    hep-phPRD(2023)·4 citations
  10. 10*

    Single-differential top quark pair production cross sections with running mass schemes at NLO

    Toni Mäkelä🇩🇪 · André Hoang🇦🇹 · Katerina Lipka🇩🇪 · Sven-Olaf Moch🇩🇪

    Single-differential cross section predictions for top quark pair production are presented at next-to-leading order, using running top quark mass renormalization schemes. The evolution of the mass of the top quark is performed in the MSR scheme for renormalization scales below the top quark mass , and in the scheme for scales above. In particular, the implementation of a mass renormalization scale independent of the strong coupling renormalization scale and factorization scale in quantum chromodynamics allows investigating independent dynamical scale variations. Furthermore, the first theoretically consistent extraction of the top quark MSR mass from experimental data is presented.

    hep-phPoS(2022)·0 citations
  11. 11*

    Helicity conservation in perfect electromagnetic and chiral fluids

    Cristina Manuel🇪🇸 · Juan M. Torres-Rincon🇪🇸

    We derive the total helicity conservation law for a perfect electromagnetic relativistic fluid. As the conservation equation contains the derivative of the magnetic helicity, it can be reshaped as having the same form as the chiral anomaly equation if the fluid is isentropic. We also take the non-relativistic limit of the helicity conservation law, and check the agreement with the Abanov-Wiegmann equation at zero temperature, but we provide further corrections in the more general case. We then consider chiral fluids, when the chiral anomaly equation has to be incorporated in the hydrodynamical equations, together with other chiral transport effects which exist in the presence of a chiral imbalance. We finally study how the chiral imbalance modifies the helicity conservation law.

    hep-phhep-thnucl-thPRD(2023)·4 citations
  12. 12*

    Analytic two-loop master integrals for production at hadron colliders. Part II

    Jian Wang🇨🇳 · Yefan Wang🇨🇳

    We present analytic results of the two-loop master integrals for hadronic production that contain two massive propagators. For the planar integral family, we succeed in constructing the canonical basis, so the results are written in terms of multiple polylogarithms. The master integrals in the non-planar integral families have been calculated by Taylor series expansion around . Even with this simplification, there are multiple square roots involved in the differential equations, which can not be rationalized simultaneously. We find that a proper linear combination of the integral basis alleviates the problem so that the results are expressed by multiple polylogarithms or single integrals over multiple polylogarithms up to weight four. These single integrals can be evaluated using the classic Newton-Cotes formulas. Our analytic results of master integrals would be used in the computation of the two-loop amplitudes for production.

    hep-phJHEP(2023)·8 citations
  13. 13*

    Mellin-Barnes Integrals: A Primer on Particle Physics Applications

    Ievgen Dubovyk🇵🇱 · Janusz Gluza🇵🇱 · Gabor Somogyi🇭🇺

    We discuss the Mellin-Barnes representation of complex multidimensional integrals. Experiments frontiered by the High-Luminosity Large Hadron Collider at CERN and future collider projects demand the development of computational methods to achieve the theoretical precision required by experimental setups. In this regard, performing higher-order calculations in perturbative quantum field theory is of paramount importance. The Mellin-Barnes integrals technique has been successfully applied to the analytic and numerical analysis of integrals connected with virtual and real higher-order perturbative corrections to particle scattering. Easy-to-follow examples with the supplemental online material introduce the reader to the construction and the analytic, approximate, and numeric solution of Mellin-Barnes integrals in Euclidean and Minkowskian kinematic regimes. It also includes an overview of the state-of-the-art software packages for manipulating and evaluating Mellin-Barnes integrals. These lecture notes are for advanced students and young researchers to master the theoretical background needed to perform perturbative quantum field theory calculations.

    hep-phhep-thLect.Notes Phys.(2022)·44 citations
  14. 14*

    Proto-neutron stars as cosmic factories for massive axion-like-particles

    Alessandro Lella🇮🇹 · Pierluca Carenza🇸🇪 · Giuseppe Lucente🇮🇹 · Maurizio Giannotti🇺🇸 · Alessandro Mirizzi🇮🇹

    The parameter space of massive axion-like-particles (ALPs) with MeV and coupled with nucleons is largely unexplored. Here, we present new constraints in this parameter region. In doing so, we characterize the supernova emissivity of heavy ALPs from a proto-neutron star, including for the first time mass effects in both nucleon-nucleon Bremsstrahlung and pionic Compton processes. In addition, we highlight novel possibilities to probe the couplings with photons and leptons from supernova ALP decays.

    hep-phastro-ph.HEPRD(2023)·71 citations
  15. 15*

    Primordial black holes from Higgs inflation with a Gauss-Bonnet coupling

    Ryodai Kawaguchi🇯🇵 · Shinji Tsujikawa🇯🇵

    Primordial black holes (PBHs) can be the source for all or a part of today's dark matter density. Inflation provides a mechanism for generating the seeds of PBHs in the presence of a temporal period where the velocity of an inflaton field rapidly decreases toward 0. We compute the primordial power spectra of curvature perturbations generated during Gauss-Bonnet (GB) corrected Higgs inflation in which the inflaton field has not only a nonminimal coupling to gravity but also a GB coupling. For a scalar-GB coupling exhibiting a rapid change during inflation, we show that curvature perturbations are sufficiently enhanced by the appearance of an effective potential containing the structures of plateau-type, bump-type, and their intermediate type. We find that there are parameter spaces in which PBHs can constitute all dark matter for these three types of . In particular, models with bump- and intermediate-types give rise to the primordial scalar and tensor power spectra consistent with the recent Planck data on scales relevant to the observations of cosmic microwave background. This property is attributed to the fact that the number of e-foldings acquired around the bump region of can be as small as a few, in contrast to the plateau-type where typically exceeds the order of 10.

    astro-ph.COgr-qchep-phhep-thPRD(2023)·30 citations
  16. 16*

    Directional direct detection of light dark matter up-scattered by cosmic rays from direction of the Galactic center

    Keiko I. Nagao🇯🇵 · Satoshi Higashino🇯🇵 · Tatsuhiro Naka🇯🇵 · Kentaro Miuchi🇯🇵

    Dark matter with MeV scale mass is difficult to detect with standard direct search detectors. However, they can be searched for by considering the up-scattering of kinetic energies by cosmic rays. Because the dark matter density is higher in the central region of the Galaxy, the up-scattered dark matter will arrive at Earth from the direction of the Galactic center. Once the dark matter is detected, we can expect to recognize this feature by directional direct detection experiments. In this study, we simulate the nuclear recoils of the up-scattered dark matter and quantitatively reveal that a large amount of this type of dark matter is arriving from the direction of the Galactic center. Also, we have shown that the characteristic signatures of the up-scattered dark matter can be verified with more than 5 confidence levels for the assumed target atoms and future upgrades to directional detectors.

    astro-ph.COhep-exhep-phphysics.ins-detJCAP(2023)·7 citations
  17. 17*

    Dynamical fermions, centre vortices, and emergent phenomena

    Derek Leinweber🇦🇺 · James Biddle🇦🇺 · Waseem Kamleh🇦🇺 · Adam Virgili (CSSM, University of Adelaide)🇦🇺

    The non-trivial ground-state vacuum fields of QCD form the foundation of matter. Here we examine the centre vortices identified within the ground-state fields of lattice QCD. We aim to understand the manner in which dynamical fermions in the QCD vacuum alter the centre-vortex structure. Using modern visualisation techniques, the centre-vortex structure of pure-gauge and dynamical-fermion fields is quantified and compared. We then explore the impact this modified structure has on measures of confinement and dynamical mass generation. The string tension of the static quark potential, positivity-violation in the gluon propagator, and dynamical mass generation in the overlap quark propagator are of particular interest. The impact of dynamical fermions is significant and provides new insights into the role of centre vortices in underpinning both confinement and dynamical chiral symmetry breaking in QCD.

    hep-lathep-phnucl-thEPJ Web Conf.(2022)·6 citations
  18. 18*

    Measurement of hadron masses in 2-color finite density QCD

    Kotaro Murakami🇯🇵 · Daiki Suenaga🇯🇵 · Kei Iida🇯🇵 · Etsuko Itou🇯🇵

    We investigate hadron spectra in 2-color QCD using lattice simulation with at low temperature and finite density in which there appears not only the hadronic phase but also the superfluid phase. We first calculate the pion and rho meson spectrum, which is well-known from previous works. The spectral ordering of these mesons flips around the quark chemical potential (: the pion mass at ), where the phase transition between the hadronic and superfluid phases occurs. For , the effective mass for the pion linearly increases while the one for the rho meson monotonically decreases. Furthermore, we measure hadron spectra with the isospin and the angular momentum . The effective masses for the meson, diquark, and antidiquark with the same quantum number become degenerate just below , and the three hadrons have the same mass in the superfluid phase. It suggests that mixing occurs between spectra associating with mesons and baryons due to the symmetry breaking. This phenomenon can be explained in the linear sigma model with the approximate Pauli-Gursey symmetry.

    hep-lathep-phnucl-thPoS(2023)·18 citations
  19. 19*

    First measurement of anti-k jet spectra and jet substructure using the archived ALEPH data at 91.2 GeV

    Yi Chen (1)🇺🇸 · Austin Baty (2)🇺🇸 · Dennis Perepelitsa (3)🇺🇸 · Christopher McGinn (3)🇺🇸 · Jesse Thaler (1)🇺🇸 · Marcello Maggi (4)🇮🇹 · Paoti Chang (5)🇹🇼 · Tzu-An Sheng (1)🇺🇸 · Yang-Ting Chien (6)🇺🇸 · Yen-Jie Lee (1) ((1) Massachusetts Institute of Technology, (2) Rice University, (3) CU Boulder, (4) INFN Bari, (5) National Taiwan University, (6) Georgia State University)🇺🇸

    We present the first anti-k jet spectrum and substructure measurements using the archived ALEPH data taken in 1994 at a center of mass energy of GeV. Jets are reconstructed with the anti-k algorithm with a resolution parameter of 0.4. It is the cleanest test of jets and QCD without the complication of hadronic initial states. The fixed center-of-mass energy also allows the first direct test of pQCD calculation. We present both the inclusive jet energy spectrum and the leading dijet energy spectra, together with a number of substructure observables. They are compared to predictions from PYTHIA6, PYTHIA8, Sherpa, HERWIG, VINCIA, and PYQUEN. None of the models fully reproduce the data. The data are also compared to two perturbative QCD calculations at NLO and with NLL'+R resummation. The results can also serve as reference measurements to compare to results from hadronic colliders. Future directions, including testing jet clustering algorithms designed for future electron-ion collider experiments, will also be discussed.

    hep-exhep-phPoS(2023)·1 citation
  20. 21*

    Scalar field dark matter and dark energy: a hybrid model for the dark sector

    Carsten van de Bruck🇬🇧 · Gaspard Poulot🇬🇧 · Elsa M. Teixeira🇬🇧

    Diverse cosmological and astrophysical observations strongly hint at the presence of dark matter and dark energy in the Universe. One of the main goals of Cosmology is to explain the nature of these two components. It may well be that both dark matter and dark energy have a common origin. In this paper, we develop a model in which the dark sector arises due to an interplay between two interacting scalar fields. Employing a hybrid inflation potential, we show that the model can be described as a system of a pressureless fluid coupled to a light scalar field. We discuss this setup's cosmological consequences and the observational signatures in the cosmic microwave background radiation and the large-scale structures.

    hep-thastro-ph.COgr-qchep-phJCAP(2023)·31 citations
  21. 22*

    Jet radius and momentum splitting fraction with dynamical grooming in heavy-ion collisions

    Lei Wang🇨🇳 · Jin-Wen Kang🇨🇳 · Qing Zhang🇨🇳 · Shuwan Shen🇨🇳 · Wei Dai🇨🇳 · Ben-Wei Zhang🇨🇳 · Enke Wang🇨🇳

    We investigate the medium modifications of momentum splitting fraction and groomed jet radius with both dynamical grooming and soft drop algorithms in heavy-ion collisions. In the calculation, the partonic spectrum of initial hard scattering in p+p collisions is provided by the event generator PYTHIA 8, and the energy loss of fast parton traversing in a hot/dense QCD medium is simulated with the Linear Boltzmann Transport (LBT) model. We predict the normalized distributions of the groomed jet radius and momentum splitting fraction with the dynamical grooming algorithm in Pb+Pb collisions at = 5.02 TeV, then compare these quantities in dynamical grooming at , with that in soft drop at and . It is found that the normalized distribution ratios Pb+Pb/p+p with respect to in , soft drop case are close to unity and those in dynamical grooming case show enhancement at small , and Pb+Pb/p+p with respect to in the dynamical grooming case demonstrate weaker modification than those in the soft drop counterparts. We further calculate the groomed jet number averaged momentum splitting fraction and averaged groomed jet radius in p+p and A+A for both grooming cases in three intervals, and find that the originally generated well balanced groomed jets will become more momentum imbalanced and less jet size narrowing due to jet quenching, and weaker medium modification of and in dynamical grooming case than in the soft drop counterparts.

    nucl-thhep-phChin.Phys.Lett.(2023)·14 citations
  22. 23*

    Open Superstring First Mass Level Effective Lagrangian: Massive Spin-2 in an Electromagnetic Background

    Karim Benakli🇫🇷 · Cassiano A. Daniel🇧🇷 · Wenqi Ke🇫🇷

    Minimal coupling leads to problems such as loss of causality if one wants to describe charged particles of spin greater than one propagating in a constant electromagnetic background. Regge trajectories in string theory contain such states, so their study may allow us to investigate possible avenues to remedy the pathologies. We present here two explicit forms, related by field redefinitions, of the Lagrangian describing the bosonic states in the first massive level of open superstrings in four dimensions. The first one reduces, when the electromagnetic field is set to zero, to the Fierz-Pauli Lagrangian for the spin-2 mode. The second one is a more compact form which simplifies the derivation of a Fierz-Pauli system of equations of motion and constraints.

    hep-thhep-phPLB(2023)·9 citations
  23. 24*

    Open Superstring First Mass Level Effective Lagrangian: Massive Spin-3/2 Fields in an Electromagnetic Background

    Karim Benakli🇫🇷 · Cassiano A. Daniel🇧🇷 · Wenqi Ke🇫🇷

    We derive fully explicit equations of motion, and the associated set of constraints, describing the propagation in a flat space-time of a charged spin-3/2 massive state in a constant electromagnetic background. For this purpose, we provide the Lagrangian for the physical fermionic fields in the first massive level of the open superstring. We first write a compact Lagrangian, allowing a simple derivation of the equations of motion and constraints. Then another one is given that yields directly a decoupled system of equations, though the fields of different spins look coupled at the level of the Lagrangian.

    hep-thhep-phPLB(2023)·10 citations
  24. 25*

    Hadrons at high temperature: an update from the FASTSUM collaboration

    Jon-Ivar Skullerud🇮🇪 · Gert Aarts🇬🇧 · Chris Allton🇬🇧 · M. Naeem Anwar🇬🇧 · Ryan Bignell🇬🇧 · Tim Burns🇬🇧 · Sergio Chaves García-Mascaraque🇬🇧 · Simon Hands🇬🇧 · Rachel Horohan D'Arcy🇮🇪 · Benjamin Jäger🇩🇰 · Seyong Kim🇰🇷 · Maria Paola Lombardo🇮🇹 and 7 other authors

    We present the most recent results from the FASTSUM collaboration for hadron properties at high temperature. This includes the temperature dependence of the light and charmed meson and baryon spectrum, as well as properties of heavy quarkonia. The results are obtained using anisotropic lattices with a fixed scale approach. We also present the status of our next generation gauge ensembles.

    hep-lathep-phnucl-thEPJ Web Conf.(2022)·7 citations
  25. 26*

    Inverse Problem Approach for Non-Perturbative QCD: Theoretical Foundation

    Ao-Sheng Xiong🇨🇳 · Fu-Sheng Yu🇨🇳 · Yong Zheng🇨🇳 · Ting Wei🇨🇳

    A novel theoretical framework, the inverse problem approach, is proposed to calculate non-perturbative quantities in quantum chromodynamics (QCD). Based on the dispersion relation of quantum field theory, this approach determines unknown low-energy non-perturbative quantities from known high-energy perturbative inputs via solving an inverse problem. The resulting inverse problem is rigorously proven to be ill-posed, with the solutions being unique but unstable. To address this instability, the well-established Tikhonov regularization is employed, yielding stable approximate solutions that converge to the true values as input errors vanish. The key features of this approach are illustrated through three toy models, demonstrating that solution precision can be systematically improved through reduced input errors and optimized regularization strategies.

    hep-thhep-exhep-lathep-ph+121 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.