Proceedings of the Third Meeting on CPT and Lorentz Symmetry, Bloomington, USA, 4-7 August 2004
Lorentz and CPT invariance is a feature of the Standard Model of particle physics and of theories of gravity such as Einstein's general relativity. However, an underlying theory such as strings may introduce small violations of Lorentz and CPT symmetry. This book consists of reviews from about...
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Language | English |
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N.J
World Scientific Publishing Co. Pte. Ltd
2005
World Scientific WSPC |
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Abstract | Lorentz and CPT invariance is a feature of the Standard Model of particle physics and of theories of gravity such as Einstein's general relativity. However, an underlying theory such as strings may introduce small violations of Lorentz and CPT symmetry. This book consists of reviews from about 50 experts in the field, covering theoretical and experimental studies of these relativity-violating effects. It comprises the Proceedings of the Third Meeting on CPT and Lorentz Symmetry, held at Indiana University in Bloomington. The Meeting focused on recent developments involving fundamental spacetime symmetries and included theoretical scenarios and experimental searches for possible relativity violations. Experimental subjects covered include resonant-cavity and interferometric behavior of photons, oscillations of neutrinos and neutral mesons, clock-comparison measurements on the Earth and in space, astrophysical observations, tests with macroscopic matter, spectroscopy of hydrogen and antihydrogen, studies of particle properties and behavior, and gravitational tests. Theoretical topics covered include physical effects at the level of the Standard Model and beyond, the possible origins and mechanisms for Lorentz and CPT violations, and associated issues in particle physics, field theory, gravity, and string theory. |
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AbstractList | Lorentz and CPT invariance is a feature of the Standard Model of particle physics and of theories of gravity such as Einstein's general relativity. However, an underlying theory such as strings may introduce small violations of Lorentz and CPT symmetry. This book consists of reviews from about 50 experts in the field, covering theoretical and experimental studies of these relativity-violating effects. It comprises the Proceedings of the Third Meeting on CPT and Lorentz Symmetry, held at Indiana University in Bloomington.The Meeting focused on recent developments involving fundamental spacetime symmetries and included theoretical scenarios and experimental searches for possible relativity violations. Experimental subjects covered include resonant-cavity and interferometric behavior of photons, oscillations of neutrinos and neutral mesons, clock-comparison measurements on the Earth and in space, astrophysical observations, tests with macroscopic matter, spectroscopy of hydrogen and antihydrogen, studies of particle properties and behavior, and gravitational tests. Theoretical topics covered include physical effects at the level of the Standard Model and beyond, the possible origins and mechanisms for Lorentz and CPT violations, and associated issues in particle physics, field theory, gravity, and string theory.Contents:Lorentz Violation and Neutrinos (M Mewes)Lorentz Violation and Gravity (V A Kostelecký)Short-Range Tests of the Gravitational Inverse-Square Law (E G Adelberger)Testing CPT Conservation using Atmospheric Neutrinos (M D Messier)Spacetime Symmetries and Varying Scalars (R Lehnert)Torsion-Balance Test of Lorentz-Symmetry Violation (B R Heckel)The Bounds on Lorentz and CPT Violating Parameters in the Higgs Sector (I Turan)A Laboratory Free-Fall Test of the Equivalence Principle - POEM (R D Reasenberg & J D Phillips)Lorentz Violation in Supersymmetric Field Theories (M S Berger)Testing Lorentz Symmetry in Space (N Russell)and other papersReadership: Graduate students, academics and researchers interested in relativity, spacetime symmetries and underlying unified theories. Lorentz and CPT invariance is a feature of the Standard Model of particle physics and of theories of gravity such as Einstein's general relativity. However, an underlying theory such as strings may introduce small violations of Lorentz and CPT symmetry. This book consists of reviews from about 50 experts in the field, covering theoretical and experimental studies of these relativity-violating effects. It comprises the Proceedings of the Third Meeting on CPT and Lorentz Symmetry, held at Indiana University in Bloomington. The Meeting focused on recent developments involving fundamental spacetime symmetries and included theoretical scenarios and experimental searches for possible relativity violations. Experimental subjects covered include resonant-cavity and interferometric behavior of photons, oscillations of neutrinos and neutral mesons, clock-comparison measurements on the Earth and in space, astrophysical observations, tests with macroscopic matter, spectroscopy of hydrogen and antihydrogen, studies of particle properties and behavior, and gravitational tests. Theoretical topics covered include physical effects at the level of the Standard Model and beyond, the possible origins and mechanisms for Lorentz and CPT violations, and associated issues in particle physics, field theory, gravity, and string theory. |
Author | Kostelecký, V. Alan |
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TableOfContents | Proceedings of the Third Meeting on CPT and Lorentz Symmetry, Bloomington, USA, 4-7 August 2004 -- Preface -- Contents -- Some anomalies related to spontaneous symmetry breaking/Yoichiro Nambu -- Tests of CPT and Lorentz symmetry using hydrogen and noble-gas masers/Ronald L. Walsworth -- New tests of Lorentz invariance in the photon sector using precision oscillators and interferometers/M.E. Tobar, P. Wolf, P.L. Stanwix, A. Fowler, S. Bize, A. Clairon,J.G. Hart Nett, E.N. Ivanov, F. van Kann, G. Santarelli, M. Susli, J. Winterflood -- Lorentz violation and neutrinos/Matthew Mewes -- Athena - first production of cold antihydrogen andbeyond/A. Kellerbauer, M. Amoretti, C. Amsler, G. Bonomi, P. D. Bowe, C. Canali, C. Carraro, C. L. Cesar, M. Charlton, M. Doser, A. Fontana, M. C. Fujiwara, R. Funakoshi, P. Genova, J. S. Hangst, R. S. Hayano, I. Johnson, L. V. Jørgensen, V. Lagomarsino, R. Landua, E. Lodi Rizzini, M. Macrí, N. Madsen, G. Manuzio, D. Mitchard, P. Montagna, H. Pruys, C. Regenfus, A. Rotondi, G. Testera, A. Variola, L. Venturelli, D. P. van der Werf, Y. Yamazaki, and N. Zurlo -- The physics of generalized Maxwell equations/C. Lämmerzahl, H. Müller -- Operation of the K-3He self-compensating co-magnetometer for a test of Lorentz symmetry/T.W. Kornack and M.V. Romalis -- Lorentz violation and gravity/V. Alan Kostelecký -- Short-range tests of the gravitational inverse square law/E.G. Adelberger -- Testing CPT conservation using atmospheric neutrinos/M.D. Messier -- New tests of Lorentz invariance using optical resonators/A. Peters, s. Herrmann, E.V. Kovalchuk, and H. Müller -- Atomic clocks on earth and in space for tests of fundamental physics and navigation/K. Gibble -- Spacetime symmetries and varying scalars/Ralf Lehnert -- Gravity probe b: launch and initialization/G.M. Keiser, W.J. Bencze, R.W. Brumley, S. Buchman, B. Clarke, D. Debra, C.W.F. Everitt, G. Green, M.I. Heifetz, D.N. Hipkins, T. Holmes, J. Li, J. Mester, B. Muhlfelder, D. Murray, Y. Ohshima, B. W. Parkinson, M. Salomon, D. Santiago, P. Shestople, A.S. Silbergleit, V. Solomonik, M. Taber, J.P. Turneaure -- Asymptotically free Lorentz-violating field theories/B. Altschul -- Torsion balance test of Lorentz symmetry violation/B.R. Heckel -- QED tests of Lorentz symmetry/R. Bluhm -- Lorentz and CPT violation with LSND/T. Katori and R. Tayloe -- Neutrino oscillations as probes of new physics/C. Pena Garay -- Babar tests of Lorentz and CPT symmetry/F. Martínez-Vidal -- Ultra-sensitive speedometer using non linear effects of optical pumping/Benjamin T.H. Varcoe -- An improved test of relativistic time dilation with fast, stored ions/G. Gwinner, S. Reinhardt, G. Saathoff, D. Schwalm, and A. Wolf, G. Huber, S. Karpuk, and C. Novotny -- Prospects for improved Lorentz violation measurements using cryogenic resonators/J.A. Nissen, J.A. Lipa, S. Wang, K. Luna, D.A. Stricker, and D. Avaloff -- Quantum gravity induced granularity of spacetime and Lorentz invariance violation/Daniel Sudarsky -- Vacuum Čerenkov radiation in Maxwell-Chern-Simons electrodynamics/R. Lehnert and R. Potting -- Weighing the antiproton using antiprotonic helium atoms and ions/R.S. Hayano -- Electrophobic Lorentz invariance violation for neutrinos and the see-saw mechanism/S.F. King -- The bounds on Lorentz and CPT violating parameters in the Higgs sector/Ismail Turan -- Macroscopic matter in Lorentz tests/H. Mūller, C. Lāmmerzahl -- Tests of Lorentz invariance and CPT conservation using MINOS/Brian J. Rebel and Stuart L. Mufson -- An SME analysis of Doppler-effect experiments/Charles D. Lane -- Nonrelativisitic ideal gases and Lorentz violations/D. Colladay and P. Mcdonald -- A laboratory free-fall test of the equivalence principle - poem/Robert D. Reasenberg and James D. Phillips -- Composite mediators and Lorentz violation/Alejandro Jenkins -- Lorentz-violating electromagnetostatics/Quentin G. Bailey -- Lorentz violation in supersymmetric field theories/M.S. Berger -- Searching for CPT violation and missing energy in positronium annihilation/P.A. Vetter -- Lorentz-violating vector fields and the rest of the universe/Eugene A. Lim -- CPT test in neutron-antineutron transitions/Y.A. Kamyshkov -- Deformed instantons/Don Colladay and Patrick Mcdonald -- Proposal to measure the speed of mu-type neutrinos to two parts in 106/T. Bergfeld, A. Godley, S.R. Mishra, and C. Rosenfeld -- Particles and propagators in Lorentz-violating supergravity/Roland E. Allen and Seiichirou Yokoo -- Testing Lorentz symmetry in space/Neil Russell |
Title | Proceedings of the Third Meeting on CPT and Lorentz Symmetry, Bloomington, USA, 4-7 August 2004 |
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