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Accelerator Physics in the Electron Ion Collider at BNL

Brookhaven National Laboratory is building a new particle accelerator, an Electron-Ion Collider, or EIC, that collides electrons with protons and nuclei to produce snapshots of those particles' internal structure. The electron beam will reveal the arrangement of the quarks and gluons that make up the protons and neutrons of nuclei. The force that holds quarks together, carried by the gluons, is the strongest force in Nature. The EIC will allow us to study this “strong nuclear force” and the role of gluons in the matter within and all around us.

The Electron-Ion Collider will consist of two intersecting accelerators, one producing an intense beam of electrons, the other a beam of protons or heavier atomic nuclei which are steered into head-on collisions.

Publications

  • Permanent Magnets Future Electron Ion Colliders at RHIC and LHeC
    D. Trbojevic, S.J. Brooks, V. Litvinenko, T. Roser (BNL), G.H. Hoffstaetter (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), V. Litvinenko (Stony Brook University), IPAC 2021
  • The Accelerator Design Progress for EIC Strong Hadron Cooling
    E. Wang, S. Peggs, V. Ptitsyn, F.J. Willeke (BNL), S.V. Benson (JLab) D. Douglas (Douglas Consulting), C.M. Gulliford, G.H. Hoffstaetter (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), C.E. Mayes (Xelera Research LLC), IPAC 2021
  • Dynamic Aperture Optimization in the EIC Electron Storage Ring with Two Interaction Points
    D. Marx, Y. Li, C. Montag, S. Tepikian, F.J. Willeke (BNL), Y. Cai, Y.M. Nosochkov (SLAC), G.H. Hoffstaetter, J.E. Unger (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), IPAC 2021
  • Design Status Update of the Electron-Ion Collider
    C. Montag, E.C. Aschenauer, G. Bassi, J. Beebe-Wang, J.S. Berg, M. Blaskiewicz, A. Blednykh, J.M. Brennan, S.J. Brooks, K.A. Brown, Z.A. Conway, K.A. Drees, A.V. Fedotov, W. Fischer, C. Folz, D.M. Gassner, X. Gu, R.C. Gupta, Y. Hao, A. Hershcovitch, C. Hetzel, D. Holmes, H. Huang, W.A. Jackson, J. Kewisch, Y. Li, C. Liu, H. Lovelace III, Y. Luo, M. Mapes, D. Marx, G.T. McIntyre, F. Méot, M.G. Minty, S.K. Nayak, R.B. Palmer, B. Parker, S. Peggs, B. Podobedov, V. Ptitsyn, V.H. Ranjbar, G. Robert-Demolaize, S. Seletskiy, V.V. Smaluk, K.S. Smith, S. Tepikian, R. Than, P. Thieberger, D. Trbojevic, N. Tsoupas, J.E. Tuozzolo, S. VerdúAndrés, E. Wang, D. Weiss, F.J. Willeke, H. Witte, Q. Wu, W. Xu, A. Zaltsman, W. Zhang (BNL), S.V. Benson, J.M. Grames, F. Lin, T.J. Michalski, V.S. Morozov, E.A. Nissen, J.P. Preble, R.A. Rimmer, T. Satogata, A. Seryi, M. Wiseman, W. Wittmer, Y. Zhang (JLab), Y. Cai, Y.M. Nosochkov, G. Stupakov, M.K. Sullivan (SLAC), K.E. Deitrick, C.M. Gulliford, G.H. Hoffstaetter, A. Mule, J.E. Unger (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), E. Gianfelice-Wendt (Fermilab), T. Satogata (ODU), D. Xu (FRIB), IPAC 2021
  • Evaluation of Polarization Effects of Stochastic Processes in the EIC
    V.S. Morozov, F. Lin (JLab), E. Gianfelice-Wendt (Fermilab), G.H. Hoffstaetter, D. Sagan (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), H. Huang, Y. Luo, F. Méot, V. Ptitsyn, V.H. Ranjbar (BNL), IPAC 2021
  • T-BMT Spin Resonance Tracker Code for He3 With Six Snakes
    V.H. Ranjbar, H. Huang, Y. Luo, F. Méot, V. Ptitsyn (BNL), G.H. Hoffstaetter, D. Sagan (Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education), F. Lin, V.S. Morozov (JLab), IPAC 2021

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Copyright © 2012 Georg Hoffstaetter. All rights reserved.