Search Results - "Zlobin, V. A."

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  1. 1

    Superconducting Strand and Cable Development for the LHC Upgrades and Beyond by Barzi, E., Andreev, N., Apollinari, G., Bucciarelli, F., Lombardo, V., Nobrega, F., Turrioni, D., Yamada, R., Zlobin, A. V.

    “…Fermilab and CERN have started the development of 11 T Nb 3 Sn dipoles to replace a number of Large Hadron Collider (LHC) NbTi dipole magnets and free space…”
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    Journal Article Conference Proceeding
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    Self-Field Effects in Magneto-Thermal Instabilities for Nb-Sn Strands by Bordini, B., Barzi, E., Feher, S., Rossi, L., Zlobin, A.V.

    “…Recent advancements in the critical current density of conductors, coupled with a large effective filament size, have drawn attention to the problem of…”
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    Journal Article Conference Proceeding
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    Conceptual Designs of Dipole Magnet for Muon Collider Storage Ring by Novitski, I, Kashikhin, V V, Mokhov, N, Zlobin, A V

    “…Conceptual designs of a superconducting dipole magnet for a storage ring of a muon collider with a 1.5 TeV center of mass (c.o.m.) energy and an average…”
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    Journal Article Conference Proceeding
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    Study of HTS Wires at High Magnetic Fields by Turrioni, D., Barzi, E., Lamm, M.J., Yamada, R., Zlobin, A.V., Kikuchi, A.

    “…Fermilab is working on the development of high field magnet systems for ionization cooling of muon beams. The use of high temperature superconducting (HTS)…”
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    Journal Article Conference Proceeding
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    Muon collider interaction region design by Alexahin, Y. I., Gianfelice-Wendt, E., Kashikhin, V. V., Mokhov, N. V., Zlobin, A. V., Alexakhin, V. Y.

    “…Design of a muon collider interaction region (IR) presents a number of challenges arising from low β* < 1 cm, correspondingly large beta-function values and…”
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    Quench Performance of HQ01, a 120 mm Bore LARP Quadrupole for the LHC Upgrade by Marchevsky, M., Ambrosio, G., Bingham, B., Bossert, R., Caspi, S., Cheng, D. W., Chlachidze, G., Dietderich, D., DiMarco, J., Felice, H., Ferracin, P., Ghosh, A., Hafalia, A. R., Joseph, J., Lizarazo, J., Sabbi, G. L., Schmalzle, J., Wanderer, P., Wang, X., Zlobin, A. V.

    “…We report quench test results for the 1-meter long, 120 mm aperture Nb 3 Sn quadrupole magnet, HQ01, designed, fabricated and tested for the LHC Accelerator…”
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    Journal Article Conference Proceeding
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    Development of a Small-Aperture Cos-Theta Dipole Insert Coil Based on Bi2212 Rutherford Cable and Stress Management Structure by Zlobin, A. V., Novitski, I., Barzi, E., Turrioni, D.

    “…The U.S. Magnet Development Program (US-MDP) is developing high-field accelerator magnets with magnetic fields beyond the limits of Nb 3 Sn technology based on…”
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    Journal Article
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    Critical Currents of Tapes and Wires at Different Temperatures and Magnetic Fields by Lombardo, V, Barzi, E, Turrioni, D, Zlobin, A V

    “…Design studies for the cooling channel of a Muon Collider show the need for straight and helical solenoids generating fields well in excess of the critical…”
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    Development and Test of a Large-Aperture Nb3Sn Cos-Theta Dipole Coil With Stress Management by Novitski, I., Zlobin, A. V., Baldini, M., Krave, S., Orris, D., Turrioni, D., Barzi, E.

    “…Large-aperture high-field superconducting (SC) magnets are used in various accelerator systems of particle accelerators/colliders. Large Lorentz forces and…”
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    Journal Article Conference Proceeding
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    Quench Behavior of 18-mm-Period, 1.1-m-Long Nb3Sn Undulator Magnets by Kesgin, Ibrahim, MacDonald, S., Kasa, M., Fuerst, J., Ivanyushenkov, Y., Barzi, E., Turrioni, D., Zlobin, A. V., Gluskin, E.

    “…A novel Nb 3 Sn-based superconducting undulator (SCU) was developed and integrated into the Advanced Photon Source (APS) at Argonne National Laboratory. The…”
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    Development of a 120-mm Aperture Nb3Sn Dipole Coil With Stress Management by Novitski, I., Zlobin, A. V., Coghill, J., Barzi, E., Turrioni, D.

    “…This paper describes a 120-mm aperture 2-layer dipole coil with stress management (SM) developed at Fermilab based on cos-theta coil geometry. A model of the…”
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    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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    Development of a Bi2212 Dipole Insert at Fermilab by Zlobin, A.V., Novitski, I., Barzi, E., Turrioni, D.

    “…A goal of the U.S. Magnet Development Program (US-MDP) is high-field magnets for accelerators with magnetic fields larger than 15 T, i.e., above the limits of…”
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    Modular Test Facility for HTS Insert Coils by Lombardo, V, Bartalesi, A, Barzi, E, Lamm, M, Turrioni, D, Zlobin, A V

    “…The final beam cooling stages of a Muon Collider may require DC solenoid magnets with magnetic fields in the range of 40-50 T. In this paper we will present a…”
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    Journal Article Conference Proceeding
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    Effect of Transverse Pressure on Brittle Superconductors by Barzi, E., Turrioni, D., Zlobin, A.V.

    “…For the design of high field accelerator magnets based on brittle superconductors, it is important to know the dependence of the critical current of a cable as…”
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    Journal Article Conference Proceeding
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    Test of Superconducting Wires and Rutherford Cables With High Specific Heat by Barzi, E., Novitsky, I., Rusy, A., Turrioni, D., Zlobin, A. V., Peng, X., Tomsic, M.

    “…High-field accelerator magnets made of state-of-the-art Nb 3 Sn Rutherford cables demonstrate relatively long trainings due to sudden heat depositions…”
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    Fabrication, Qualification and Test of High Roebel Coated Conductor Cable for HEP Magnets by Lombardo, V, Barzi, E, Turrioni, D, Zlobin, A V, Long, N J, Badcock, R A

    “…The Roebel concept allows for the cabling of high J c YBa 2 Cu 3 O 7-δ CC tapes which are commercially available in reasonable lengths. This approach to cable…”
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    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