1–6 Jul 2025
Omni Boston Hotel at the Seaport
US/Eastern timezone

Session

Fri-Mo-Po.05 - Electron-Ion Collider

4 Jul 2025, 09:30
Ensemble Ballroom, Level 2

Ensemble Ballroom, Level 2

Conveners

Fri-Mo-Po.05 - Electron-Ion Collider

  • Vittorio Di Marzo (Università degli studi di Napoli Federico II)
  • Eva Cuninková (Slovak University of Technology in Bratislava, Faculty of Materials Science and Technology in Trnava)

Presentation materials

There are no materials yet.

  1. Anis Ben Yahia (Brookhaven National Laboratory)
    04/07/2025, 09:30
    Poster

    The Electron-Ion Collider (EIC), hosted by Brookhaven National Laboratory, is designed to deliver a peak luminosity of 10^34 cm−2 s−1. The interaction region (IR) of the EIC imposes several constraints in terms of field quality, aperture, and spatial layout, which necessitates the development of several unique superconducting serpentine direct wind magnets. These magnets are constructed using...

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  2. Febin Kurian
    04/07/2025, 09:30
    Poster

    The Electron-Ion Collider (EIC) plans to have a number of unique superconducting magnets in its interaction region (IR) to satisfy challenging requirements. As a test bed for addressing several R&D challenges in the development of Rutherford cable magnets with very large apertures, B1pF is currently being built as a full-length prototype at the Superconducting Magnet Division at Brookhaven...

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  3. Dr Ramesh Gupta (Brookhaven National Laboratory)
    04/07/2025, 09:30
    Poster

    The Optimum Integral Design (OID) with Direct Wind (DW) technology offers a unique value engineering opportunity for the Interaction Region (IR) dipole B1ApF of the Electron Ion Collider (EIC). The current design of the B1ApF magnet is based on the conventional cosine theta configuration using Rutherford cable. As compared to most accelerator magnets, B1ApF has a small coil length (1500 mm) to...

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  4. Peng Xu (BNL)
    04/07/2025, 09:30
    Poster

    The Electron Ion Collider (EIC) will collide high energy and highly polarized hadron and electron beams with luminosities up to 10^34/cm^2/s. The magnet designs at the interaction region (IR) are challenging due to the close proximity of the hadron and electron beams. Several serpentine types of superconducting magnets have been designed due to the space restrictions at the IR. To validate the...

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  5. Robin Penavaire (CEA/IRFU)
    04/07/2025, 09:30
    Poster

    The Electron-Ion Collider (EIC) requires eight solenoid magnets to polarize the spin of the electron beam. These magnets, called SPIN ROTATORS, are categorized as four LONG (6.2 m) and four SHORT (2.5 m). They operate at a peak magnetic field of about 8.5 T with a 100 mm bore diameter. The integrated magnetic field along the axis is the figure of merit for these magnets, being respectively...

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  6. Michael Anerella
    04/07/2025, 09:30
    Poster

    Brookhaven National Laboratory (BNL) was chosen to host the international Electron-Ion Collider (EIC), which will collide high energy and highly polarized hadron and electron beams with a center of mass energy up to 140 GeV. The Interaction Region (IR) requires several large aperture, relatively high field superconducting dipole and quadrupole magnets, some of which are very closely spaced....

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  7. Danlu Zhang
    04/07/2025, 09:30
    Poster

    The Spectrometer Section (SPS) is a critical part of the ongoing High Rigidity Spectrometer (HRS) project at FRIB, Michigan State University. The HRS can accept high rigidity beam up to 8 Tm from FRIB and will significantly enhance the scientific output. One of the key components in the SPS is a large-scale, rectangular-shaped iron-dominated superconducting dipole magnet DS1. The overall...

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  8. Nicholaos Tsoupas
    04/07/2025, 09:30
    Poster

    The Electron Ion Collider (EIC) is under design to be built at Brookhaven National Laboratory (BNL) to collide hadron bunches with the electron bunches. The hadron bunches will be injected and accelerated in the Hadron Storage Ring (HSR) and will be brought in collisions with the electron bunches of the Electron Storage Ring (ESR). To minimize the kicker strength of the fast strip line...

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  9. Dr Feipeng Ning (Institute of High Energy Physics, China)
    04/07/2025, 09:30
    Poster

    The Circle Electron Positron Collider(CEPC) is a large international scientific project initiated by and to be hosted in China. It will produce large samples of Higgs, W and Z bosons to allow precision measurements of their properties as well as searches for BSM physics.The magnet system uses a solenoid that is supported by an aluminum alloy cylinder and cooled indirectly by liquid helium to...

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  10. Sara Notaro
    04/07/2025, 09:30
    Poster

    The Electron Ion Collider (EIC) currently in development at Brookhaven National Laboratory (BNL) will collide high energy and highly polarized hadron and electron beams with luminosities up to 10^34 cm^-2 s^-1. Part of the EIC is the Electron Storage Ring (ESR), which will store and maintain the electron polarity of the EIC electron beam for collision energies up to 18 GeV. There are two main...

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  11. Racquel Lovelace
    04/07/2025, 09:30
    Poster

    The Electron-Ion Collider (EIC) at Brookhaven National Laboratory (BNL) is designed to deliver a peak luminosity of 10^34 cm^-2 sec^-1. An electron storage ring (ESR) will be installed in the existing Relativistic Heavy Ion Collider (RHIC) tunnel and will store polarized electron beams from 5 to 18 GeV. The ESR will have 750 dipole magnets with varying field requirements, including 576...

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