Experimental Particle Physics Rolling Grant 2009-2014

Lead Research Organisation: University of Manchester
Department Name: Physics and Astronomy

Abstract

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 will study proton-proton collisions at the highest energies yet, and is expected to reveal a wealth of new particles. LHCb will reveal further details of the properties of B hadrons. 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.

Publications

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Ferro F (2005) TOTEM physics in Nuclear Physics B - Proceedings Supplements

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Grishanov, B.I. (2006) ATF2 proposal. Vol. 2

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Gschwendtner, Edda (2010) The CLIC Post-Collision Line

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Lafferty G. D. (2006) Tau physics from B factories in INTERNATIONAL JOURNAL OF MODERN PHYSICS A

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Lafferty G. D. (2010) Rare tau decays from BABAR in CHINESE PHYSICS C

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Lees J (2010) Measurement of the ? ? * ? ? c transition form factor in Physical Review D

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Mornacchi, Giuseppe (2008) The ATLAS detector walks another mile in CERN Cour.

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OPAL Collaboration (2012) Search for charged Higgs bosons in e+e- collisions at [Formula: see text]. in The European physical journal. C, Particles and fields

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Wengler T (2010) Highlights from ATLAS

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Wren A (2009) Measurement of using the BaBar detector in Nuclear Physics B - Proceedings Supplements