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Showing 1 to 7 of 7 for “"Accelerator physics"”.

  1. Compensation Techniques in Accelerator Physics

    <p>Accelerator physics is one of the most diverse multidisciplinary fields of physics, wherein the dynamics of particle beams is studied. It takes more than the understanding of basic electromagnetic interactions to be able to predict the beam dynamics, and to be able to develop new techniques to …

    odu Repository record for Compensation Techniques in Accelerator Physics (opens in a new tab)

  2. Studies of Coherent Synchrotron Radiation with the Discontinuous Galerkin Method

    … synchrotron radiation, an important topic in accelerator physics. We build upon the published computational work of T. Agoh and D. Zhou in solving Maxwell's equations in the frequency-domain using a paraxial approximation which reduces Maxwell's equations to a Schr&ouml;dinger-like system. We …

    unm Repository record for Studies of Coherent Synchrotron Radiation with the Discontinuous Galerkin Method (opens in a new tab)

  3. Numerical Calculation of Losses of Trapped Vortices Under Strong RF Meissner Current and DC Superheating Field in Type II Superconductors

    … superconductors has attracted much attention in accelerator physics community to develop next-generation high-performance accelerator cavities. However, the extreme dynamics of curvilinear elastic vortices driven by very strong currents close to the depairing limit or superheating field of a …

    odu Repository record for Numerical Calculation of Losses of Trapped Vortices Under Strong RF Meissner Current and DC Superheating Field in Type II Superconductors (opens in a new tab)

  4. Problems in point charge electrodynamics

    … II comprises an investigation into a problem in accelerator physics. In a high energy accelerator the cross-section of the beampipe is not continuous and there exist geometric discontinuities such as collimators and cavities. When a relativistic bunch of particles passes such a discontinuity the …

    lancaster Repository record for Problems in point charge electrodynamics (opens in a new tab)

  5. Ion Bunch Formation Strategies for the JLEIC Collider

    … proposed and supported as the next major nuclear physics facility in the United States, with very high design luminosities of 10<sup>33</sup> − 10<sup>34</sup> cm<sup>−2</sup> s<sup>−1</sup>. The Jefferson Lab EIC concept, JLEIC, includes construction of a new ion beam accelerator complex. To …

    odu Repository record for Ion Bunch Formation Strategies for the JLEIC Collider (opens in a new tab)

  6. Coherence Control and Measurement at the CLS Using X-ray Interferometry

    As synchrotron light source storage rings transition to multi-bend achromat (MBA) lattices for higher brightness and coherence, emerging challenges arise in beam diagnostic tools that accurately monitor and control the spatial degree of coherence. MBA lattice designs in modern fourth generation …

    sask Repository record for Coherence Control and Measurement at the CLS Using X-ray Interferometry (opens in a new tab)

  7. Crab Cavity Requirements for the Jefferson Lab Electron-Ion Collider

    <p>An Electron-Ion Collider (EIC) has been proposed to be the next large facility to explore the dynamics of quarks and gluons inside nuclei. A conceptual design for a Jefferson Lab Electron-Ion Collider (JLEIC) is being developed. It is based on the CEBAF 12 GeV machine as a full energy electron …

    odu Repository record for Crab Cavity Requirements for the Jefferson Lab Electron-Ion Collider (opens in a new tab)