Search Results - "DeKamp, J."

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  1. 1

    The NSCL cyclotron gas stopper – Under construction by Schwarz, S., Bollen, G., Brodeur, M., Chouhan, S.S., DeKamp, J., Gehring, A.E., Joshi, N.S., Magsig, C., Morrissey, D.J., Ringle, R., Ottarson, J., Zeller, A.F.

    “…Rare isotopes are produced at the NSCL by projectile fragmentation at energies on the order of 100MeV/u for a wide range of research. In order to provide these…”
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    Journal Article
  2. 2

    Cooling and Operation of the MSU Cyclotron Gas-Stopper Magnet by Green, M. A., Magsig, C., Bollen, G., Chouhan, S., DeKamp, J., Lawton, D., Morrissey, D., Ottarson, J., Schwarz, S., Zeller, A. F.

    “…The two coils of the cyclotron gas-stopper magnet at Michigan State University (MSU) were each cooled down and filled with liquid helium made from 300-K gas…”
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    Journal Article
  3. 3

    Superferric Cold Iron Quadrupole Magnets for FRIB Fragment Separator by Chouhan, S. S., Borden, T., DeKamp, J., Hausmann, M., Johnson, M., Swanson, R., Zeller, A. F.

    “…The Facility for Rare Isotope Beams under construction at Michigan State University, a new national user facility funded by the U. S. Department of Energy…”
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    Journal Article Conference Proceeding
  4. 4

    Cold Mass Support System for the MSU Superconducting Cyclotron Gas-Stopper Magnet by Green, M. A., Ottarson, J., Bollen, G., Chouhan, S. S., DeKamp, J., Lawton, D., Magsig, C., Morrissey, D., Schwarz, S., Zeller, A. F.

    “…The cyclotron gas-stopper magnet at Michigan State University consists of two superconducting coils, each in its own cryostat. The two cryostats are mounted in…”
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    Journal Article
  5. 5

    The Superferric Cyclotron Gas Stopper Magnet Design and Fabrication by Chouhan, S. S., Green, M. A., Bollen, G., DeKamp, J., Lawton, D., Magsig, C., Morrissey, D., Ottarson, J., Schwarz, S., Zeller, A. F.

    “…The Facility for Rare Isotope Beams under construction and the existing National Superconducting Cyclotron Laboratory at Michigan State University will provide…”
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    Journal Article Conference Proceeding
  6. 6

    Design and Fabrication of Iron-Dominated Magnets and Cryomodule Magnetic Shielding for the Re-Accelerator Project at MSU by Chouhan, S. S., Witgen, R., Compton, C., DeKamp, J., Lin, L. Y., Saito, K., Yamazaki, Y., Zeller, A. F.

    “…The National Superconducting Cyclotron Laboratory at Michigan State University is constructing a rare isotope beam re-accelerator facility, called "ReA." The…”
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    Journal Article Conference Proceeding
  7. 7

    Iron Dominated 2 T Superconducting Dipoles for the Second Folded Segment of the FRIB Folded Linac by Chouhan, S. S., Green, M. A., Binkowski, J., DeKamp, J., Swanson, R., Zeller, A. F.

    “…The Facility for Rare Isotope Beams under construction at Michigan State University will be capable of providing beams of any element at energies of at least…”
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    Journal Article Conference Proceeding
  8. 8

    A Radiation Resistant Dipole Using Metal-Oxide Insulated CICC by DeLauter, J., DeKamp, J.C., Zeller, A.F.

    “…Several proposed accelerator facilities will be capable of providing intense beams on targets that are in close proximity to superconducting magnets. These…”
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    Journal Article Conference Proceeding
  9. 9

    Fabrication and Testing of the Magnet System for SuSI Superconducting Source for Ions by DeKamp, J.C., Zavodszky, P.A., Arend, B., Hitchcock, S., Moskalik, J., Ottarson, J., Zeller, A.F.

    “…A new superconducting ECR ion source operating at 18 + 14.5 GHz microwave frequencies has been designed and is presently being constructed at the National…”
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    Journal Article Conference Proceeding
  10. 10

    A Superconducting Horizontal Bend Magnet for JLab's 12 Gev/c Super High Momentum Spectrometer by Chouhan, S., Zeller, A.F., DeKamp, J., Brindza, P., Lassiter, S., Fowler, M.

    “…Collaboration exists between NSCL and JLab to developing the reference design of JLab's super high momentum spectrometer (SHMS) horizontal bend magnet. A…”
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    Journal Article Conference Proceeding
  11. 11

    A radiation resistant dipole by Zeller, A.F., DeKamp, J.C., DeLauter, J.

    “…Several proposed and approved accelerator projects will need to deal with magnetic elements operating in high-radiation environments. Previous projects at LANL…”
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    Journal Article Conference Proceeding
  12. 12

    Design of a Radiation Resistant Quadrupole Using CICC by Zeller, A.F., DeLauter, J., DeKamp, J.C., Bierwagen, J.

    “…High acceptance fragment separators for secondary beam facilities require large aperture quadrupoles close to the production targets. These quadrupoles are…”
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    Journal Article Conference Proceeding
  13. 13

    Design of the High Rigidity Spectrometer at FRIB by Noji, S, Zegers, R. G. T, Berg, G. P. A, Amthor, A. M, Baumann, T, Bazin, D, Burkhardt, E. E, Cortesi, M, DeKamp, J. C, Hausmann, M, Portillo, M, Potterveld, D. H, Sherrill, B. M, Stolz, A, Tarasov, O. B, York, R. C

    Published 19-10-2022
    “…Nucl. Instrum. Methods Phys. Res., Sect. A 1045 (2023) 167548 A High Rigidity Spectrometer (HRS) has been designed for experiments at the Facility for…”
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    Journal Article
  14. 14

    Design of SuSI – superconducting source for ions at NSCL/MSU – II. The conventional parts by Zavodszky, P.A., Arend, B., Cole, D., DeKamp, J., Machicoane, G., Marti, F., Miller, P., Moskalik, J., Ottarson, J., Vincent, J., Zeller, A.

    “…An ECR ion source is being designed to initially serve as a test bench for development and later will replace the existing 6.4GHz SC-ECRIS. This ECRIS will…”
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    Journal Article
  15. 15

    Superferric magnets for the proposed international accelerator facility at GSI by Zeller, A.F., DeKamp, J.C., Moritz, G., Muhle, C., Winkler, M., Langenbeck, B.

    “…The proposed International Accelerator Facility at Gesellschaft fur Schwerionenforschung (GSI) has several new experimental devices that may require…”
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    Journal Article Conference Proceeding
  16. 16

    Construction and testing of superferric dipoles for the A1900 Fragment Separator by Zeller, A.F., DeKamp, J.C., Wagner, J., Capelli, D.

    “…The A1900 Fragment Separator contains four superconducting dipoles. The dipoles produce a field of 2 T at an operating current of 185 A. The changes in…”
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    Journal Article Conference Proceeding
  17. 17

    System testing and installation of the NHMFL/NSCL sweeper magnet by Bird, M.D., Kenney, S.J., Toth, J., Weijers, H.W., DeKamp, J.C., Thoennessen, M., Zeller, A.F.

    “…A superconducting dipole, designed for use as a sweeper magnet in nuclear physics experiments, has been designed and built by the National High Magnetic Field…”
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    Journal Article Conference Proceeding
  18. 18

    Final design of a compact sweeper magnet for nuclear physics by Toth, J., Bird, M.D., Miller, J.R., Prestemon, S., DeKamp, J.C., Morris, L., Thoennessen, M., Zeller, A.

    “…A superconducting dipole, designed for use as a sweeper magnet for nuclear physics experiments, is being constructed by the NHMFL for operation at the NSCL…”
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    Journal Article Conference Proceeding
  19. 19

    Cooling of the plasma chamber for the AECR-U type electron cyclotron resonance ion source ARTEMIS by Koivisto, H., DeKamp, J., Zeller, A.

    “…The temperature distribution inside the ECRIS plasma chamber has been studied using finite element analysis. The main goal of these studies was to find out the…”
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    Journal Article
  20. 20

    A superferric quadrupole for use in an SRF cryomodule by Zeller, A.F., DeKamp, J.C., Facco, A., Grimm, T.L., Kim, J., Zink, R.

    “…A superferric quadrupole for use in a superconducting radio frequency (SRF) cryomodule has been designed and constructed. Even though the quad has a poor…”
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    Journal Article Conference Proceeding