Search Results - "KASHIKHIN, V. S"

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  1. 1

    Torus CLAS12-Superconducting Magnet Quench Analysis by Kashikhin, V. S., Elouadhiri, L., Ghoshal, P. K., Kashy, D., Makarov, A., Pastor, O., Quettier, L., Velev, G., Wiseman, M.

    “…The JLAB Torus magnet system consists of six superconducting trapezoidal racetrack-type coils assembled in a toroidal configuration. These coils are wound with…”
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    Journal Article
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    Superconducting Splittable Quadrupole Magnet for Linear Accelerators by Kashikhin, V. S., Andreev, N., Kerby, J., Orlov, Y., Solyak, N., Tartaglia, M., Velev, G.

    “…A new superconducting quadrupole magnet for linear accelerators was fabricated at Fermilab. The magnet is designed to work inside a cryomodule in the space…”
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    Journal Article Conference Proceeding
  3. 3

    Aluminum Stabilized NbTi Conductor Test Coil Design, Fabrication, and Test Results by Andreev, N., Chlachidze, G., Evbota, D., Kashikhin, V. S., Lamm, M., Makarov, A., Nakamoto, T., Ogitsu, T., Tanaka, K., Tartaglia, M., Yamamoto, A., Yoshida, M.

    “…A new generation of precision muon conversion experiments is planned at both Fermilab and KEK. These experiments will depend upon a complex set of solenoid…”
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    Journal Article Conference Proceeding
  4. 4

    Development of Rutherford-Type Cables for High Field Accelerator Magnets at Fermilab by Andreev, N., Barzi, E., Borissov, E., Elementi, L., Kashikhin, V.S., Lombardo, V., Rusy, A., Turrioni, D., Yamada, R., Zlobin, A.V.

    “…Fermilab's cabling facility has been upgraded to a maximum capability of 42 strands. This facility is being used to study the effect of cabling on the…”
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    Journal Article Conference Proceeding
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    Selection Tests of MnZn and NiZn Ferrites for Mu2e 300 kHz and 5.1 MHz AC Dipoles by Velev, G. V., Bourkland, K., Bulushev, E., Elementi, L., Feher, S., Harding, D. J., Iedemska, I., Kashikhin, V. S., Makarov, A., Pfeffer, H., Venturini, M.

    “…Mu2e, a charged lepton flavor violation (CLFV) experiment is planned to start at Fermilab late in this decade. The proposed experiment will search for…”
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    Journal Article
  6. 6

    Design and Fabrication of the Mu2e Cable Test Solenoid by Makarov, A, Andreev, N, Kashikhin, V S, Lamm, M, Velev, G V, Yamamoto, A, Ogitsu, T

    “…Superconducting solenoids developed for the Fermilab Mu2e require an extended R&D on superconductor cables performance, working in strong field in the critical…”
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    Journal Article Conference Proceeding
  7. 7

    Magnetic Mirror Structure for Testing Shell-Type Quadrupole Coils by Andreev, N, Barzi, E, Bossert, R, Chlachidze, G, Kashikhin, V S, Kashikhin, V V, Lamm, M J, Nobrega, F, Novitski, I, Tartaglia, M, Turrioni, D, Yamada, R, Zlobin, A V

    “…This paper presents magnetic and mechanical designs of the quadrupole mirror structure to test single shell-type quadrupole coils. Three quadrupole coils made…”
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    Journal Article Conference Proceeding
  8. 8

    Model NbTi Helical Solenoid Fabrication and Test Results by Andreev, N., Barzi, E., Chlachidze, G., Evbota, D., Kashikhin, V. S., Kashikhin, V. V., Lamm, M. J., Makarov, A., Novitski, I., Orris, D. F., Tartaglia, M. A., Tompkins, J. C., Turrioni, D., Walbridge, D., Yu, M., Zlobin, A. V.

    “…A program to develop model magnets for a helical cooling channel is under way at Fermilab. In the first steps of a planned sequence of magnets, two four-coil…”
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    Journal Article Conference Proceeding
  9. 9

    Measurement of the Magnetic and Thermal Characteristics of Ferrites for a 300 kHz AC Dipole for the Mu2e Experiment by Velev, G V, Harding, D J, Iedemska, I, Kashikhin, V S, Kashikhin, V V, Makarov, A, Makulski, A, Orris, D

    “…A charged lepton flavor violation experiment, Mu2e, is planned at Fermilab, searching for muon to electron conversions with an unprecedented sensitivity,…”
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    Journal Article Conference Proceeding
  10. 10

    Development and Test of LARP Technological Quadrupole (TQC) Magnet by Feher, S., Nobrega, F., Novitski, I., Pischalnikov, Yu, Sylvester, C., Tartaglia, M., Turrioni, D., Whitson, G., Yamada, R., Zlobin, A.V., Caspi, S., Bossert, R. C., Dietderich, D., Ferracin, P., Hannaford, R., Hafalia, A.R., Sabbi, G., Ambrosio, G., Andreev, N., Barzi, E., Carcagno, R., Kashikhin, V.S., Kashikhin, V.V., Lamm, M.J.

    “…In support of the development of a large-aperture superconducting quadrupole for the Large Hadron Collider (LHC) luminosity upgrade, two-layer quadrupole…”
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    Journal Article Conference Proceeding
  11. 11

    Development and Test of LARP Technological Quadrupole Models of TQC Series by Bossert, R.C., Ambrosio, G., Andreev, N., Barzi, E., Caspi, S., Chlachidze, G., Dietderich, D.T., Feher, S., Ferracin, P., Ghosh, A., Hafalia, A.R., Kashikhin, V.S., Kashikhin, V.V., Lamm, M.J., Nobrega, F., Novitski, I., Orris, D., Sabbi, G.L., Tartaglia, M., Zlobin, A.V.

    “…This paper describes the development and test of TQC01b and TQC02E, the second and third models in the TQC series. ANSYS analysis of the mechanical structure,…”
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    Journal Article Conference Proceeding
  12. 12

    Superconducting Magnet System for Muon Beam Cooling by Kashikhin, V.S., Kashikhin, V.V., Yonehara, K., Johnson, R.P., Andreev, N., Novitski, I., Zlobin, A.V.

    “…A helical cooling channel has been proposed to quickly reduce the six-dimensional phase space of muon beams for muon colliders, neutrino factories, and intense…”
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    Journal Article Conference Proceeding
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    Design and Fabrication of a Multi-Element Corrector Magnet for the Fermilab Booster by Makarov, A., Drennan, C., DiMarco, J., Harding, D.J., Kashikhin, V.S., Lackey, J.R., Prebys, E.L., Schlabach, P., Velev, G.V., Walbridge, D.G.

    “…A new package of six corrector elements has been designed to better control the beam position, tune, and chromaticity in the Fermilab Booster synchrotron. It…”
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    Journal Article Conference Proceeding
  15. 15

    Longitudinal Gradient Dipole Magnet Prototype for APS at ANL by Kashikhin, V. S., Borland, M., Chlachidze, G., Decker, G., Dejus, R., DiMarco, J., Doose, C. L., Gardner, T. J., Harding, D. J., Jaski, M. S., Kerby, J. S., Makarov, A. V.

    “…An upgrade of the Advanced Photon Source is being planned at Argonne National Laboratory (ANL). The main goal of the upgrade is to improve the storage ring…”
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    Journal Article
  16. 16

    Test Results of a 2 Tesla Superconducting Transmission Line Magnet Obtained With 102 Sensors Array of Hall Station by Kashikhin, V.S., Carcagno, R., Foster, G.W., Nehring, R., Piekarz, H., Schlabach, P.

    “…A prototype of a 2 Tesla superconducting transmission line magnet for future hadron colliders was designed, built and tested at Fermilab. This combined…”
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    Journal Article Conference Proceeding
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    Superconducting superferric dipole magnet with cold iron core for the VLHC by Foster, G.W., Kashikhin, V.S.

    “…Magnetic system of the stage I Very Large Hadron Collider (VLHC) is based on 2 Tesla superconducting magnets with combined functions. These magnets have a room…”
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    Journal Article Conference Proceeding
  19. 19

    Magnetic and Thermal Performance of a Conduction-Cooled Splittable Quadrupole by Carcagno, R., Hemmati, A., Hayano, H., Kashikhin, V. S., Kim, M. J., Kimura, N., Kokoska, L., Kotelnikov, S., Nogiec, J., Orris, D. F., Pilipenko, R., Sylvester, C., Takahashi, M., Tartaglia, M. A., Tosaka, T., Wokas, T., Yamamoto, A.

    “…A superconducting quadrupole magnet with splittable yoke has been designed for use in ILC Main Linac (ML) cryomodules. The splittable yoke allows assembly…”
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    Journal Article Conference Proceeding
  20. 20

    Conduction Cooling Test of a Splittable Quadrupole for ILC Cryomodules by Andreev, N., Kashikhin, V. S., Kerby, J., Kimura, N., Takahashi, M., Tartaglia, M. A., Tosaka, T., Yamamoto, A.

    “…A superconducting splittable quadrupole magnet was designed at Fermilab for use in ILC-style cryomodules, in which the magnet is to be assembled around the…”
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    Journal Article Conference Proceeding