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Nb3Sn Accelerator Magnets : Designs, Technologies and Performance / edited by Daniel Schoerling, Alexander V. Zlobin.

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Format:
Book
Author/Creator:
Schoerling, Daniel, Editor.
Contributor:
Schoerling, Daniel., Editor.
Zlobin, Alexander V., Editor.
Series:
Particle Acceleration and Detection, 1611-1052
Language:
English
Subjects (All):
Particle acceleration.
Physical measurements.
Measurement.
Machinery.
Atoms.
Physics.
Particle Acceleration and Detection, Beam Physics.
Measurement Science and Instrumentation.
Machinery and Machine Elements.
Atomic, Molecular, Optical and Plasma Physics.
Local Subjects:
Particle Acceleration and Detection, Beam Physics.
Measurement Science and Instrumentation.
Machinery and Machine Elements.
Atomic, Molecular, Optical and Plasma Physics.
Physical Description:
1 online resource (XVII, 452 p. 292 illus., 171 illus. in color.)
Edition:
1st ed. 2019.
Place of Publication:
Cham : Springer International Publishing : Imprint: Springer, 2019.
Language Note:
English
Summary:
This open access book is written by world-recognized experts in the fields of applied superconductivity and superconducting accelerator magnet technologies. It provides a contemporary review and assessment of the experience in research and development of high-field accelerator dipole magnets based on Nb3Sn superconductor over the past five decades. The reader attains clear insight into the development and the main properties of Nb3Sn composite superconducting wires and Rutherford cables, and details of accelerator dipole designs, technologies and performance. Special attention is given to innovative features of the developed Nb3Sn magnets. The book concludes with a discussion of accelerator magnet needs for future circular colliders.
Contents:
Part 1. Introduction
Chapter 1. SC magnets in particle accelerators (D. Schoerling)
Chapter 2. Nb3Sn strand and cable progress (E. Barzi)
Chapter 3. Historical overview (1960s-1980s) (L. Rossi)
Part 2. Cos-theta dipoles
Chapter 4. CERN-ELIN (R. Perin)
Chapter 5. CERN-MSUT (A. den Ouden)
Chapter 6. LBNL D20 (S. Caspi)
Chapter 7. FNAL HFDA (A. Zlobin)
Chapter 8. FNAL/CERN MBH (F. Savary)
Part 3. Block-type dipoles
Chapter 9. TAMU (P. McIntyre)
Chapter 10. LBNL HD (GL. Sabbi)
Part 4. Common coil dipoles
Chapter 11. BNL (R. Gupta)
Chapter 12. LBNL (S. Gourlay)
Chapter 13. FNAL HFDC (A. Zlobin)
Part 5. Outlook
Chapter 14. Nb3Sn accelerator needs for FCC (D. Tommasini)
Chapter 15. Summary/Conclusions (D. Schoerling).
Notes:
Description based on publisher supplied metadata and other sources.
ISBN:
3-030-16118-8
OCLC:
1119721440

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