Starting with an introduction into low temperature superconductivity and accelerator physics the book describes nbti superconductor manufacturing magnetic field calculations including persistent current effects cryogenic implications of superconducting magnets magnet manufacturing and the measuring techniques to verify magnet performance. Superconducting magnets developed by the superconducting magnet division smd have been used in accelerators that explore the fundamental particles and forces of the universe including the relativistic heavy ion collider rhic at brookhaven lab and the large hadron collider at europes cern laboratory. Superconducting accelerator lattice magnets proton and ion colliders for high energy physics with their requirement for high magnetic fields have driven the development of the most advanced superconducting magnets since the early 1980s and continue to do so bcmt traces one of its deepest roots to the early days of this field and is now . The superconducting nb ti alloy discovered in the 1960s is the most successful practical superconductor since the 1970s it has been the workhorse for superconducting accelerator magnets thanks to its ductility high current carrying capability and the successful industrialization of the composite wires based on this material
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