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    托

    托马斯·杰斐逊国家加速器设施

    Thomas Jefferson National Accelerator Facility
    EST. 1984
    3,560论文总数
    9.6万引用总数

    Thomas Jefferson National Accelerator Facility (TJNAF), commonly called Jefferson Lab or JLab, is a US National Laboratory located in Newport News, Virginia. Its stated mission is "to provide forefront scientific facilities, opportunities and leadership essential for discovering the fundamental structure of nuclear matter; to partner in industry to apply its advanced technology; and to serve the nation and its communities through education and public outreach."Since June 1, 2006, it has been operated by Jefferson Science Associates, LLC, a limited liability company created by Southeastern Universities Research Association and PAE Applied Technologies. Until 1996 it was known as the Continuous Electron Beam Accelerator Facility (CEBAF); commonly, this name is still used for the main accelerator. Founded in 1984, Jefferson Lab employs more than 750 people, and more than 2,000 scientists from around the world have conducted research using the facility.

    论文量&引用量时间轴

    机构学者

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    Alexandre Deur
    Alexandre Deur
    Thomas Jefferson National Accelerator Facility
    论文:300引用:0H-index:0
    Volker Burkert
    Volker Burkert
    Jefferson Lab
    论文:296引用:0H-index:0
    William J. Briscoe
    William J. Briscoe
    Department of Physics, Columbian College of Arts & Sciences, George Washington University
    论文:159引用:0H-index:0
    M. Khandaker
    M. Khandaker
    Norfolk State University
    论文:154引用:0H-index:0
    Valery Kubarovsky
    Valery Kubarovsky
    Institute for High Energy Physics
    论文:147引用:0H-index:0
    Marco Battaglieri
    Marco Battaglieri
    Istituto Nazionale di Fisica Nucleare
    论文:144引用:0H-index:0
    G. Niculescu
    G. Niculescu
    Northern Illinois University, James Madison University
    论文:136引用:0H-index:0
    Woochan Kim
    Woochan Kim
    College of Information Science and Technology, Korea Advanced Institute of Science and Technology
    论文:135引用:0H-index:0
    E. Pasyuk
    E. Pasyuk
    Arizona State University
    论文:132引用:0H-index:0

    论文(3561)

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    1Electron Beam Irradiation Effects on Bulk Metals: a Comparative Study of Polycrystalline Versus Single-Crystalline Structures
    A. A. Elmustafa, N. A. Sultana, A. H. Al-Allaq, M. Ojha, Y. S. Mohammed, J. Vennekate, H. Baumgart

    This study investigates the effects of electron beam (e-beam) irradiation on the mechanical and structural properties of eight bulk metallic samples, comprising both polycrystalline (PC) and single-crystalline (SC) forms of Ni, Cr, V, and Ti. These metals were evaluated as potential candidates for beam exit windows in high-power (MW-class) particle accelerators. The primary objective is to identify metals capable of withstanding the conditions of high-power/MW-class e-beam accelerators and serve effectively as exit windows. Selection criteria were based on each metal’s intrinsic properties, power dissipation capability, and irradiation-induced changes in mechanical behavior, including hardness, elastic modulus, and defect density. Comprehensive characterization was conducted using field-emission scanning electron microscopy (FESEM), atomic force microscopy (AFM), scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM–EDS), X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM), selected area electron diffraction (SAED), and nanoindentation, performed both before and after exposure to a 66 kGy dose from a 10 MeV e-beam accelerator. Results revealed that e-beam irradiation induced hardening in PC Ni, whereas PC Ti, commonly used in beam exit windows, exhibited softening. The observed softening in PC Ti is attributed to grain coarsening, elongation, and the formation of twins and twin boundaries, in contrast to the smaller, compressed grains in the pristine (Pr) PC Ti samples, consistent with the Hall–Petch relationship. The stresses due to twinning are small and insignificant in influencing the overall hardening of the PC Ti irradiated sample when compared to the stresses due to the dislocation density. Conversely, SC Ti samples exhibited irradiation-induced hardening. The SC Ti irradiated samples developed additional irradiation-induced modifications in crystallographic texture of (100), (101), (110), (200), (112), (004), and (211) as evidenced from the XRD results, which could probably explain the hardening effect that is caused by irradiation.

    2026Journal of Materials Science(2026)引用:50
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    2Solving Challenges in QCD 3D Partonic Distributions
    Harut Avakian

    The superior luminosity and high polarization of CEBAF, combined with the high resolution and excellent particle identification capabilities of its detectors, as well as the ability for multidimensional and multiparticle detection using polarized targets, make Jefferson Lab uniquely positioned to disentangle the genuine intrinsic transverse structure of hadrons encoded in 3D partonic distributions – particularly in the kinematic regime dominated by valence quarks. The inclusion of Jefferson Lab data on semi-inclusive and hard exclusive hadron production has the potential to dramatically advance our understanding of non-perturbative QCD dynamics. Although a wealth of data from various Jefferson Lab experiments is already available, its incorporation into phenomenological studies has been slow, and a significant portion of data from other leptoproduction experiments is still missing from global fits. In this contribution, we discuss the existing challenges and outline a path forward for improving the analysis of low center-of-mass electroproduction experiments in general, and Jefferson Lab data in particular.

    2026The European Physical Journal A(2026)引用:34
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    3Review of Particle Physics *
    Particle Data Group,Fuminobu Takahashi,Ken‐ichi Hikasa, Y. Sumino,Masaharu Tanabashi, J. Tanaka, M. Yokoyama, K. Agashe, G. Aielli, B. C. Allanach,Jaime Álvarez-Muñiz, C. Amsler,

    The Review summarizes much of particle physics and cosmology. Using data from previous editions, plus 3,200 new measurements from 903 papers, we list, evaluate, and average measured properties of gauge bosons and the recently discovered Higgs boson, leptons, quarks, mesons, and baryons. We summarize searches for hypothetical particles such as supersymmetric particles, heavy bosons, axions, dark photons, etc. Particle properties and search limits are listed in Summary Tables. We give numerous tables, figures, formulae, and reviews of topics such as Higgs Boson Physics, Supersymmetry, Grand Unified Theories, Neutrino Mixing, Dark Energy, Dark Matter, Cosmology, Particle Detectors, Colliders, Probability and Statistics. Most of the 118 reviews are updated, including many that are heavily revised. The Review is divided into two volumes. Volume 1 includes the Summary Tables and 96 review articles. Volume 2 consists of the Particle Listings and contains also 22 reviews that address specific aspects of the data presented in the Listings. The complete Review (both volumes) is published online on the website of the Particle Data Group ( pdg.lbl.gov ) and in a journal. Volume 1 is available in print as the PDG Book. A Particle Physics Booklet with the Summary Tables and essential tables, figures, and equations from selected review articles is available in print, as a web version optimized for use on phones, and as an Android app. The PDG API (Application Programming Interface) provides access to the data published in the Review in machine-readable format.

    2026International Journal of Modern Physics A(2026)引用:8
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    4Gaussian Processes for Inferring Parton Distributions
    Yamil Cahuana Medrano, Hervé Dutrieux,Joseph Karpie, Kostas Orginos,Savvas Zafeiropoulos

    The extraction of parton distribution functions (PDFs) from experimental or lattice QCD data is an ill-posed inverse problem, where regularization strongly impacts both systematic uncertainties and the reliability of the results. We study a framework based on Gaussian Process Regression (GPR) to reconstruct PDFs from lattice QCD matrix elements. Within a Bayesian framework, Gaussian processes serve as flexible priors that encode uncertainties, correlations, and constraints without imposing rigid functional forms. We investigate a wide range of kernel choices, mean functions, and hyperparameter treatments. We quantify information gained from the data using the Kullback Leibler divergence. Synthetic data tests demonstrate the consistency and robustness of the method. Our study establishes GPR as a systematic and non-parametric approach to PDF reconstruction, offering controlled uncertainty estimates and reduced model bias in lattice QCD analyses.

    2026Journal of High Energy Physics(2026)引用:6
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    5First Simultaneous Global QCD Analysis of Kaon and Pion Parton Distributions with Lattice QCD Constraints
    P. C. Barry,Chueng-Ryong Ji, W. Melnitchouk, N. Sato,Fernanda Steffens

    We perform the first simultaneous global QCD analysis of pion and kaon parton distribution functions (PDFs), constrained by pion- and kaon-induced Drell-Yan (DY) and leading neutron electroproduction data, together with lattice QCD data on pion and kaon PDF moments. The analysis indicates a softer valence u̅ distribution in the K^- than in the π^-, and a significantly more peaked valence s-quark density in K^- compared with the u̅. The effective exponent governing the high-x behavior of the PDF is found to be larger for u̅ in the kaon, β_u̅^K^-= 1.6(2), than in the pion, β_u̅^π^-= 1.16(4), in the range 0.7 ≤ x ≤ 0.95. From the gluon momentum fractions we find the pion's gluon content accounts for ≈ 1/3 of the mass budget of the pion at μ=2 GeV, but only ≈ 1/4 for the kaon.

    2026Physical Review D(2026)引用:6
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