Search Results - "Virostek, S"

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  1. 1

    Upgrade possibilities for continuous wave rf electron guns based on room-temperature very high frequency technology by Sannibale, F., Filippetto, D., Johnson, M., Li, D., Luo, T., Mitchell, C., Staples, J., Virostek, S., Wells, R., Byrd, J. M.

    Published in Physical review. Accelerators and beams (27-11-2017)
    “…The past decade was characterized by an increasing scientific demand for extending towards higher repetition rates (MHz class and beyond) the performance of…”
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    Journal Article
  2. 2

    Protecting the Leads of a Powered Magnet That is Protected With Diodes and Resistors by Green, M. A., Pan, H., Prestemon, S. O., Virostek, S. P.

    “…MRI magnets and other magnets that have a low current and high self-inductance are passively quench-protected with a system that includes sub-divided coils…”
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    Journal Article Conference Proceeding
  3. 3

    Quench Voltage Analysis for a Long Superconducting Solenoids Group by Pan, H., Prestemon, S., Virostek, S., Luo, T., Pilipenko, R.

    “…A solid understanding and accurate analysis of the voltage transients in the quench process of superconducting magnets is the basis for verifying quench…”
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    Journal Article Conference Proceeding
  4. 4

    The Results of Tests of the MICE Spectrometer Solenoids by Virostek, S P, Green, M A

    “…The Muon Ionization Cooling Experiment (MICE) spectrometer solenoid magnets will be the first magnets to be installed within the MICE cooling channel. The…”
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    Journal Article Conference Proceeding
  5. 5

    The Results of Recent MICE Superconducting Spectrometer Solenoid Tests by Green, M A, Virostek, S P, Zisman, M S

    “…The MICE spectrometer solenoid magnets will be the first magnets to be installed within the MICE cooling channel. The MICE spectrometer solenoids may be the…”
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    Journal Article Conference Proceeding
  6. 6

    The Cooling and Safety Design of a Pair of Binary Leads for the MICE Coupling Magnets by Wang, L., Sun, S., Cao, Y., Yin, L. X., Guo, X. L., Pan, H., Green, M. A., Li, D. R., Demello, A., Virostek, S. P.

    “…The key to being able to operate the superconducting solenoids in the Muon Ionization Cooling Experiment (MICE) using cryocoolers running at around 4.2 K is…”
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    Journal Article Conference Proceeding
  7. 7

    Magnetic Measurements for a MICE Spectrometer Solenoid by Buehler, M., Bross, A., Hess, C., Orris, D., Pilipenko, R., Preece, R., Sylvester, C., Tartaglia, M., Tompkins, J., Virostek, S.

    “…The goal of the Muon Ionization Cooling Experiment (MICE) is to demonstrate muon cooling for a future muon collider. In order to quantify this cooling effect…”
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    Journal Article Conference Proceeding
  8. 8

    The Engineering Design of the 1.5 m Diameter Solenoid for the MICE RFCC Modules by Wang, L., Green, M.A., Xu, F.Y., Wu, H., Li, L.K., Guo, X.L., Liu, C.S., Han, G., Jia, L.X., Li, D., Prestemon, S.O., Virostek, S.P.

    “…The RF coupling coil (RFCC) module of MICE is where muons that have been cooled within the MICE absorber focus (AFC) modules are re-accelerated to their…”
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    Journal Article Conference Proceeding
  9. 9

    Design and Construction of a Prototype Solenoid Coil for MICE Coupling Magnets by Wang, L, Pan, H, Guo, X L, Xu, F Y, Liu, X K, Wu, H, Zheng, S X, Green, M A, Li, D R, Virostek, S P, Zisman, M S

    “…A superconducting coupling solenoid mounted around four conventional RF cavities, which produces up to 2.6 T central magnetic field to keep the muons within…”
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    Journal Article Conference Proceeding
  10. 10

    Progress on Design and Construction of a MuCool Coupling Solenoid Magnet by Wang, L, Liu, X K, Xu, F Y, Li, S Y, Pan, H, Wu, H, Guo, X L, Zheng, S X, Green, M A, Li, D R, Virostek, S P, Zisman, M S

    “…The MuCool program undertaken by the US Neutrino Factory and Muon Collider Collaboration is to study the behavior of muon ionization cooling channel…”
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    Journal Article Conference Proceeding
  11. 11

    The Design Parameters for the MICE Tracker Solenoid by Green, M.A., Chen, C.Y., Juang, T., Lau, W.W., Taylor, C., Virostek, S.P., Wahrer, R., Wang, S.T., Witte, H., Yang, S.Q.

    “…The first superconducting magnets to be installed in the union ionization cooling experiment (MICE) will be the tracker solenoids. The tracker solenoid module…”
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    Journal Article Conference Proceeding
  12. 12

    The Helium Cooling System and Cold Mass Support System for the MICE Coupling Solenoid by Wang, L., Wu, H., Li, L.K., Green, M.A., Liu, C.S., Li, S.Y., Liu, X.K., Jia, L.X., Virostek, S.P.

    “…The MICE cooling channel consists of alternating three absorber focus coil module (AFC) and two RF coupling coil module (RFCC) where the process of muon…”
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    Journal Article Conference Proceeding
  13. 13

    The Physical Connection and Magnetic Coupling of the MICE Cooling Channel Magnets and the Magnet Forces for Various MICE Operating Modes by Yang, S.Q., Baynham, D.E., Fabricatore, P.., Farinon, S.., Green, M.A., Ivanyushenkov, Y.., Lau, W.W., Maldavi, S.M., Virostek, S.P., Witte, H..

    “…A key issue in the construction of the MICE cooling channel is the magnetic forces between various elements in the cooling channel and the detector magnets…”
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    Journal Article Conference Proceeding
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    A CW normal-conductive RF gun for free electron laser and energy recovery linac applications by Baptiste, K., Corlett, J., Kwiatkowski, S., Lidia, S., Qiang, J., Sannibale, F., Sonnad, K., Staples, J., Virostek, S., Wells, R.

    “…Currently proposed energy recovery linac and high average power free electron laser projects require electron beam sources that can generate up to ∼ 1 nC bunch…”
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    Journal Article
  17. 17

    Electrical and Quench Performance of the First MICE Coupling Coil by Tartaglia, M. A., Carcagno, R., Makulski, A., Nogiec, Jerzy, Orris, D., Pilipenko, R., Sylvester, C., Caspi, S., Pan, H., Prestemon, S., Virostek, S.

    “…The first MICE Coupling Coil has been tested in a conduction-cooled environment in the new Solenoid Test Facility at Fermilab. We present an overview of the…”
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    Journal Article
  18. 18

    Thermal analysis of fiber armatures by Craddock, W., Virostek, S., Calvin, H., Eljes, Y.

    Published in IEEE transactions on magnetics (01-01-1989)
    “…A detailed time-dependent thermal model using temperature-dependent material properties has been developed and implemented in the Westinghouse railgun…”
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  19. 19

    Lattice design and expected performance of the Muon Ionization Cooling Experiment demonstration of ionization cooling by Bogomilov, M., Tsenov, R., Vankova-Kirilova, G., Song, Y., Tang, J., Li, Z., Bertoni, R., Bonesini, M., Chignoli, F., Mazza, R., Palladino, V., de Bari, A., Cecchet, G., Orestano, D., Tortora, L., Kuno, Y., Ishimoto, S., Filthaut, F., Jokovic, D., Maletic, D., Savic, M., Hansen, O. M., Ramberger, S., Vretenar, M., Asfandiyarov, R., Blondel, A., Drielsma, F., Karadzhov, Y., Charnley, G., Collomb, N., Dumbell, K., Gallagher, A., Grant, A., Griffiths, S., Hartnett, T., Martlew, B., Moss, A., Muir, A., Mullacrane, I., Oates, A., Owens, P., Stokes, G., Warburton, P., White, C., Adams, D., Anderson, R. J., Barclay, P., Bayliss, V., Boehm, J., Bradshaw, T. W., Courthold, M., Francis, V., Fry, L., Hayler, T., Hills, M., Lintern, A., Macwaters, C., Nichols, A., Preece, R., Ricciardi, S., Rogers, C., Stanley, T., Tarrant, J., Tucker, M., Wilson, A., Watson, S., Bayes, R., Nugent, J. C., Soler, F. J. P., Gamet, R., Barber, G., Blackmore, V. J., Colling, D., Dobbs, A., Dornan, P., Hunt, C., Kurup, A., Lagrange, J.-B., Long, K., Martyniak, J., Middleton, S., Pasternak, J., Uchida, M. A., Cobb, J. H., Lau, W., Booth, C. N., Hodgson, P., Langlands, J., Overton, E., Robinson, M., Smith, P. J., Wilbur, S., Dick, A. J., Ronald, K., Whyte, C. G., Young, A. R., Boyd, S., Franchini, P., Greis, J. R., Pidcott, C.

    Published in Physical review. Accelerators and beams (19-06-2017)
    “…Muon beams of low emittance provide the basis for the intense, well-characterized neutrino beams necessary to elucidate the physics of flavor at a neutrino…”
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    Journal Article
  20. 20

    RF, Thermal and Structural Analysis of the 201.25 MHz Muon Ionization Cooling Cavity by Virostek, S., Li, D.

    “…A finite element analysis has been carried out to characterize the RF, thermal and structural behavior of the prototype 201.25 MHz cavity for a muon ionization…”
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    Conference Proceeding