Completed Physics & Astronomy Materials & Manufacturing

The University of Manchester Experimental Particle Physics Group Rolling Grant Application 2006-2011

In plain English

AI plain-English summary

Manchester University’s particle physicists are smashing protons together at record energies and hunting for a rare nuclear decay that would rewrite the rules of matter. They run five experiments simultaneously: ATLAS at CERN’s LHC will probe the highest-energy collisions ever created, expected to reveal new particles; BaBar measures why matter survived over antimatter after the Big Bang; Dzero searches for new forces at Fermilab; and SuperNemo looks for a type of beta decay that, if found, would prove the neutrino is its own antiparticle. This is fundamental science. It addresses the deepest gap in physics: what the universe is made of and why it exists at all. The experiments test the Standard Model and look for cracks that could point to entirely new laws of nature. There is no immediate practical application. The group also runs R&D on detectors, electronics, accelerators, and computing—infrastructure that often spins out into medical imaging, data processing, or accelerator technologies decades later. But the primary goal is understanding, not utility. Past fundamental particle physics gave us the World Wide Web and PET scanners; this work may yield similar surprises, but that is not why it is funded.

View original technical description
The Particle Physics Group at Manchester University will continue to probe the fundamental particles and forces of nature. This is done by several experiments: ATLAS at the :LHC at CERN, due to start in 2007, will study proton-proton collisions at the highest energies yet, and is expected to reveal a wealth of new particles. BaBar at SLAC is measuring the difference between matter and antimatter. Dzero is at Fermilab, which is presently the highest energy collider till the LHC starts. SuperNemo will search for a type of nuclear beta decay which, if found, would show that the neutrino is its own antiparticle. We also run an ongoing R and D programme for the detectors, electronics, accelerators and computers we use for our investigations into fundamental physics.

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Researchers

Brian Cox (Co-Investigator)Christian Schwanenberger (Co-Investigator)Cinzia Da Via (Co-Investigator)David Bailey (Co-Investigator)Frederick Loebinger (Co-Investigator)George Lafferty (Co-Investigator)Robin Marshall (Co-Investigator)Roger Barlow (Principal Investigator)Stefan Soldner-Rembold (Co-Investigator)Stephen Watts (Co-Investigator)Terry Wyatt (Co-Investigator)Thorsten Wengler (Co-Investigator)Un-Ki Yang (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Experimental Particle Physics Rolling Grant 2009-2014
2012 Consolidated Grant Supplement
Particle Physics Experimental Consolidated Grant (2015-2019)
Consolidated Grant 2012-2016, Particle Physics Group, The University of Manchester
Particle Physics Experimental Consolidated Grant - Equipment (2015-2019)

Original classification

Research Grant

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