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Particle physics in the LHC era /
~
Barr, G.
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Particle physics in the LHC era /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Particle physics in the LHC era // G. Barr, R. Devenish, R. Walczak, & T. Weidberg.
Author:
Barr, G.
other author:
Devenish, Robin.
Published:
Oxford :Oxford University Press, : 2016.,
Description:
xviii, 403 p. :ill. ;25 cm.
[NT 15003449]:
Mathematical methods -- Accelerators -- Particle detectors -- Static quark model -- Relativistic quantum mechanics -- Weak interactions -- Experimental tests of electroweak theory -- Dynamic quarks -- Oscillations and CP violation in meson systems -- Neutrino oscillations -- The Higgs boson -- LHC and BSM.
Subject:
Large Hadron Collider (France and Switzerland) -
ISBN:
9780198748557
Particle physics in the LHC era /
Barr, G.
Particle physics in the LHC era /
G. Barr, R. Devenish, R. Walczak, & T. Weidberg. - 1st ed. - Oxford :Oxford University Press,2016. - xviii, 403 p. :ill. ;25 cm. - Oxford master series in particle physics, astrophysics, and cosmology. - Oxford master series in physics.Particle physics, astrophysics, and cosmology..
Includes bibliographical references (p. 391-397) and index.
Mathematical methods -- Accelerators -- Particle detectors -- Static quark model -- Relativistic quantum mechanics -- Weak interactions -- Experimental tests of electroweak theory -- Dynamic quarks -- Oscillations and CP violation in meson systems -- Neutrino oscillations -- The Higgs boson -- LHC and BSM.
"This text gives an introduction to particle physics at a levelaccessible to advanced undergraduate students. It is based on lectures given to 4th year physics students over a number of years, and reflects the feedback from the students. The aim is toexplain the theoretical and experimental basis of the Standard Model (SM) of Particle Physics with the simplest mathematical treatment possible. All the experimental discoveries that led to the understanding of the SM relied on particle detectors and mostof them required advanced particle accelerators. A unique featureof this book is that it gives a serious introduction to the fundamental accelerator and detector physics, which is currently only available in advanced graduate textbooks. The mathematical tools that are required such as group theory are covered in one chapter. A modern treatment of the Dirac equation is given in which the free particle Dirac equation is seen as being equivalent to the Lorentz transformation. The idea of generating the SM interactions from fundamental gauge symmetries is explained. The core of the book covers the SM. The tools developed are used to explain its theoretical basis and a clear discussion is given of the critical experimental evidence which underpins it. A thorough account is given of quark flavour and neutrino oscillations based on published experimental results, including some from running experiments. A simple introduction tothe Higgs sector of the SM is given. This explains the key idea of how spontaneous symmetry breaking can generate particle masseswithout violating the underlying gauge symmetry. A key feature ofthis book is that it gives an accessible explanation of the discovery of the Higgs boson, including the advanced statistical techniques required. The final chapter gives an introduction to LHC physics beyond the standard model and the techniques used in searches for new physics. There is an outline of the shortcomingsof the SM and a discussion of possible solutions and future experiments to resolve these outstanding questions"--
ISBN: 9780198748557
LCCN: 2015957415Subjects--Topical Terms:
940556
Large Hadron Collider (France and Switzerland)
LC Class. No.: QC793.2 / .B37 2016
Dewey Class. No.: 539.72
Particle physics in the LHC era /
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Particle physics in the LHC era /
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Oxford University Press,
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Mathematical methods -- Accelerators -- Particle detectors -- Static quark model -- Relativistic quantum mechanics -- Weak interactions -- Experimental tests of electroweak theory -- Dynamic quarks -- Oscillations and CP violation in meson systems -- Neutrino oscillations -- The Higgs boson -- LHC and BSM.
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"This text gives an introduction to particle physics at a levelaccessible to advanced undergraduate students. It is based on lectures given to 4th year physics students over a number of years, and reflects the feedback from the students. The aim is toexplain the theoretical and experimental basis of the Standard Model (SM) of Particle Physics with the simplest mathematical treatment possible. All the experimental discoveries that led to the understanding of the SM relied on particle detectors and mostof them required advanced particle accelerators. A unique featureof this book is that it gives a serious introduction to the fundamental accelerator and detector physics, which is currently only available in advanced graduate textbooks. The mathematical tools that are required such as group theory are covered in one chapter. A modern treatment of the Dirac equation is given in which the free particle Dirac equation is seen as being equivalent to the Lorentz transformation. The idea of generating the SM interactions from fundamental gauge symmetries is explained. The core of the book covers the SM. The tools developed are used to explain its theoretical basis and a clear discussion is given of the critical experimental evidence which underpins it. A thorough account is given of quark flavour and neutrino oscillations based on published experimental results, including some from running experiments. A simple introduction tothe Higgs sector of the SM is given. This explains the key idea of how spontaneous symmetry breaking can generate particle masseswithout violating the underlying gauge symmetry. A key feature ofthis book is that it gives an accessible explanation of the discovery of the Higgs boson, including the advanced statistical techniques required. The final chapter gives an introduction to LHC physics beyond the standard model and the techniques used in searches for new physics. There is an outline of the shortcomingsof the SM and a discussion of possible solutions and future experiments to resolve these outstanding questions"--
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Oxford master series in physics.
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751697
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六樓西文書區HC-Z(6F Western Language Books)
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QC793.2 B37 2016
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