03.Applied Superconductivity by John G. Webster (Editor)

By John G. Webster (Editor)

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D. Lewin, Pulsed superconducting synchrotrons, Nucl. Instr. Methods, 52: 248, 1967. HIGH-ENERGY PHYSICS PARTICLE DETECTOR MAGNETS 751 17. M. N. , Experimental and theoretical studies of filamentary superconducting composites, Part 1: Basic ideas and theory, J. Phys. Appl. , 3: 1517, 1970. 38. A. , Development of a prototype thin superconducting solenoid magnet for the SDC detector, IEEE Trans. Appl. , 5: 849, 1995. 18. M. A. Green, Cooling intrinsically stable superconducting magnets with super-critical helium, IEEE Trans.

ASME Boiler and Pressure Vessel Code, Section 8, Division 1, ANSI/ASME BPV-VIII-1. 752 HIGH-FIELD EFFECTS 63. R. , Isogrid vacuum shell for large superconducting solenoids, in Advances in Cryogenic Engineering, Vol. 39, New York: Plenum Press, 1993, p. 1991. 64. H. , Development of a brazed-aluminum-honeycomb vacuum vessel for a thin superconducting solenoid magnet, in Advances in Cryogenic Engineering, Vol. 39, New York: Plenum Press, 1993, p. 1983. 65. M. N. Wilson, Superconducting Magnets, Oxford, United Kingdom: Oxford Clarendon Press, 1983, p.

D. Taylor, Forced two-phase helium cooling of large superconducting magnets, in Advances in Cryogenic Engineering, Vol. 25, New York: Plenum Press, 1979, p. 420. 26. J. , Long term experience on the superconducting magnet system for the CELLO detector, IEEE Trans. , MAG-17: 1567, 1981. 27. J. M. Royet, J. D. Scudiere, and R. E. Schwall, Aluminum stabilized multifilamentary Nb-Ti conductor, IEEE Trans. , MAG-19: 761, 1983. 28. E. , Design of an indirectly cooled 3-m diameter superconducting solenoid with external support cylinder for the Fermilab collider detector facility, IEEE Trans.

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