Search Results - "Zlobin, V. A."
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Superconducting Strand and Cable Development for the LHC Upgrades and Beyond
Published in IEEE transactions on applied superconductivity (01-06-2013)“…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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2
Self-Field Effects in Magneto-Thermal Instabilities for Nb-Sn Strands
Published in IEEE transactions on applied superconductivity (01-06-2008)“…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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3
Test Results of the First 3.7 m Long Nb3Sn Quadrupole by LARP and Future Plans
Published in IEEE transactions on applied superconductivity (01-06-2011)“…In December 2009 during its first cold test, LQS01, the first Long Nb 3 Sn Quadrupole made by LARP (LHC Accelerator Research Program, a collaboration of BNL,…”
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4
Conceptual Designs of Dipole Magnet for Muon Collider Storage Ring
Published in IEEE transactions on applied superconductivity (01-06-2011)“…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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5
Magnet R&D for the US LHC Accelerator Research Program (LARP)
Published in IEEE transactions on applied superconductivity (01-06-2006)“…In 2004, the US DOE established the LHC Accelerator Research Program (LARP) with the goal of developing a technology base for future upgrades of the LHC. The…”
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6
Study of HTS Wires at High Magnetic Fields
Published in IEEE transactions on applied superconductivity (01-06-2009)“…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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7
Muon collider interaction region design
Published in Physical review special topics. PRST-AB. Accelerators and beams (02-06-2011)“…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
Published in IEEE transactions on applied superconductivity (01-06-2012)“…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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Development of a Small-Aperture Cos-Theta Dipole Insert Coil Based on Bi2212 Rutherford Cable and Stress Management Structure
Published in IEEE transactions on applied superconductivity (01-09-2022)“…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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10
Critical Currents of Tapes and Wires at Different Temperatures and Magnetic Fields
Published in IEEE transactions on applied superconductivity (01-06-2011)“…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
Published in IEEE transactions on applied superconductivity (01-08-2024)“…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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12
Quench Behavior of 18-mm-Period, 1.1-m-Long Nb3Sn Undulator Magnets
Published in IEEE transactions on applied superconductivity (01-08-2024)“…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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13
Development of a 120-mm Aperture Nb3Sn Dipole Coil With Stress Management
Published in IEEE transactions on applied superconductivity (01-09-2022)“…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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14
Development of Rutherford-Type Cables for High Field Accelerator Magnets at Fermilab
Published in IEEE transactions on applied superconductivity (01-06-2007)“…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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15
Development of a Bi2212 Dipole Insert at Fermilab
Published in IEEE transactions on applied superconductivity (01-08-2023)“…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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16
Modular Test Facility for HTS Insert Coils
Published in IEEE transactions on applied superconductivity (01-06-2010)“…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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17
Effect of Transverse Pressure on Brittle Superconductors
Published in IEEE transactions on applied superconductivity (01-06-2008)“…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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18
Test of Superconducting Wires and Rutherford Cables With High Specific Heat
Published in IEEE transactions on applied superconductivity (01-08-2021)“…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
Published in IEEE transactions on applied superconductivity (01-06-2011)“…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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20
Magnetic Mirror Structure for Testing Shell-Type Quadrupole Coils
Published in IEEE transactions on applied superconductivity (01-06-2010)“…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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