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In 1975, I visited Fermilab on a sabbatical from Caltech and became interested in R. R. Wilson's proposal to build an accelerator utilizing superconducting technology for the magnets. If the project succeeded, the energy available for studying the structure of particles would more than double. The idea was appealing, especially since I knew nothing about the subject of superconducting magnets. Even more exciting was the development in Europe and Russia of the possibility of using a proton accelerator as a proton-antiproton collider, which would increase the energy available for studying the structure of the proton by more than 30 times. The prospects were so seductive that I left Caltech and put my efforts into the development of the Tevatron, which was the first synchrotron using superconducting magnets and has been the template for the next generation of such machines. I was also cospokesman for the design, construction, and operation of the CDF detector. The most exciting and gratifying outcome of this work was our discovery of the TOP quark in 1995 -- a result that was completely dependent upon the greatly increased energy of the Tevatron. The TOP quark, with a mass almost equal to a gold atom, continues to fascinate us!
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REVIEWS OF ACCELERATOR SCIENCE AND TECHNOLOGY, VOL 1no. 01 (2008): 185-210
PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMSno. 8 (2003)
Natureno. 6776 (2000): 350-350
msra(1995)
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