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He decided to stay at Fermilab, where he continued to work on the development of the Tevatron, CDF, [4] and Fermilab's colliding beams program. He won the National Medal of Technology in 1989 for his work on the design, testing, and commissioning of the Tevatron's superconducting magnets, which was the first large-scale application of ...
Download QR code; Print/export Download as PDF; Printable version; In other projects ... Help. Pages in category "Fermilab experiments" The following 19 pages are in ...
Chris Quigg (born December 15, 1944) is an American theoretical physicist at the Fermi National Accelerator Laboratory (Fermilab). He graduated from Yale University in 1966 and received his Ph.D. in 1970 under the tutelage of J. D. Jackson at the University of California, Berkeley.
Main Injector Experiment for ν-A, or MINERνA, is a neutrino scattering experiment which uses the NuMI beamline at Fermilab.MINERνA seeks to measure low energy neutrino interactions both in support of neutrino oscillation experiments and also to study the strong dynamics of the nucleon and nucleus that affect these interactions.
In order to provide 1.2 MW of protons to LBNF, the second phase of the Proton Improvement Project ("PIP II"), which will increase proton delivery from the Fermilab accelerator chain by 60%, must be completed. [17] The cost of this Fermilab upgrade as of 2022 is $1.28B. [18] Thus, the PIP II and DUNE Phase I combined costs exceed $4B.
Download QR code; Print/export Download as PDF; Printable version; ... Pages in category "Fermilab" The following 25 pages are in this category, out of 25 total.
MicroBooNE is a liquid argon time projection chamber (LArTPC) at Fermilab in Batavia, Illinois.It is located in the Booster Neutrino Beam (BNB) beamline where neutrinos are produced by colliding protons from Fermilab's booster-accelerator on a beryllium target; this produces many short-lived particles (mainly charged pions) that decay into neutrinos.
The Collider Detector at Fermilab (CDF) experimental collaboration studies high energy particle collisions from the Tevatron, the world's former highest-energy particle accelerator. The goal is to discover the identity and properties of the particles that make up the universe and to understand the forces and interactions between those particles.