|
Authors |
Program No. |
Title (link to full paper) |
|
Ozaki, O |
LFA-01 |
R & D studies on mechanical stress of 1GHz NMR magnet |
|
Jikihara, K |
LFA-02 |
A Cryocooler Cooled 10 T Sprit-Pair Superconducting Magnet for Neutron Scattering Experiment |
|
Miller, J.R |
LFA-03 |
Conceptual Design of Series-Connected Hybrid Magnet Systems |
|
Watanabe, K |
LFA-04 |
Cryocooled Large Bore Superconducting Magnet for a Hybrid Magnet system Employing Highly Strengthened (Nb,Ti)3Sn Wires with CuNb Stabilizer |
|
Masullo, G. |
LFA-05 |
Development of 14T Magnet at High Homogeneity |
|
Kawaguchi T. |
LFA-06 |
Design of Structure and Quench-stability of Sector Magnets for RIKEN Superconducting Ring Cyclotron |
|
Ohuchi, N |
LFB-01 |
Magnetic field measurements of the 1-m long model quadrupole magnet for the LHC Interaction Region |
|
Bottura, L |
LFB-02 |
Tests of a 1-meter Model 70mm Aperture Quadrupole for the LHC Low-beta Insertions |
|
Ozelis, J.P |
LFB-03 |
Mechanical Design and Performance of the Fermilab High Gradient Quadrupole Model Magnets for the LHC Interaction Regions |
|
Caspi, S |
LFB-04 |
A Superconducting Quadrupole Magnet Array for A HeavyIon Fusion |
|
Brindza, P |
LFB-05 |
Superconducting Septum Magnet design for Jefferson Lab Hall A |
|
LFB-06 |
Interactive Procedure for Estimating Performance of Magnet Designs |
|
|
Shintomi, T |
LFC-01 |
Development of the LHC Model Dipole Magnet with a Single Aperture |
|
Zichy, J.A |
LFC-02 |
Design study of a large-gap superconducting Spectrometer Dipole |
|
Makida, Y |
LFC-03 |
Performance of a Superconducting Solenoid Magnet for the BELLE Detector in KEKB B-factory |
|
Taylor, C.E |
LFC-04 |
A High-Field Bend Magnet for the ALS |
|
Mikami, Y |
LFC-05 |
Development of a 7 Tesla Superconducting Wiggler |
|
Rajput, R |
LFC-06 |
Design of a 5.6 T Superconducting Wiggler Magnet for INDUS |
|
Dael, A |
LFC-07 |
Status of the B0 Model of the Atlas Barrel Toroid Coil |
|
Brandsberg, T.A |
LFC-08 |
Final Thermal Analysis Of The G-Zero Magnetic Spectrometer |
|
Bertani, M. |
LFC-09 |
Survey and alignment of the FINUDA experiment at DAPHNE |
|
Larsen, J.G |
LFD-01 |
Melt textured YBCO-plates for a 13000 kA current lead from 77 K to 4 K |
|
Odaka, S |
LFD-02 |
Development of kA-class Gas-cooled HTS Current Lead |
|
Rodenbush, A.J |
LFD-03 |
Conduction and Vapor Cooled HTS Power Leads for Large Scale Applications |
|
Bock, J |
LFD-04 |
HTc Current Leads in commercial Magnet Systems applying Bi 2212 MCP BSCCO Material |
|
Jeong, D.Y |
LFD-05 |
Optimal Design of 2 kA-Class Bi-2223/Ag-alloy Current Leads for SMES Magnet |
|
Le Bars, J |
LFD-06 |
Development of Current Leads using Electrolyticaly Deposited BSCCO 2212 Tapes |
|
Yamaguchi, S |
LFD-07 |
|
|
Heller, R |
LFE-01 |
|
|
Heller, R |
LFE-02 |
|
|
Citver, G |
LFE-03 |
Cryogenic modeling of HTS power leads |
|
Citver, G |
LFE-04 |
HTS power lead test results |
|
Isono, T |
LFE-05 |
Test results of high temperature superconductor current lead at 14.5 kA operation |
|
Ballarino, A |
LFE-06 |
High Temperature Superconducting Current Leads for the Large Haron Collider |
|
Blumenfeld, P |
LFE-07 |
HTS Current Lead Test Facility with Cryogenic Heat Pipe Intercepts |
|
Schwenterly, S.W |
LFE-08 |
Design and Verification Tests on a High-Voltage Lead for HTSC Power Applications |
|
Keilin, V.E |
LFE-09 |
Optimized HTS Current Leads |
|
Rey, C.M. |
LFE-10 |
Re-evaluation of the Intercept Temperature for HTS Current Leads Based onPractical and Economical Considerations |
List of ASC 98 Technical Sessions
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