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Titlebook: Electroweak Physics at LEP and LHC; Arno Straessner Book‘‘‘‘‘‘‘‘ 2010 Springer-Verlag Berlin Heidelberg 2010 Boson.Electroweak physics.Exp

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书目名称Electroweak Physics at LEP and LHC
编辑Arno Straessner
视频video
概述This book is open access, which means that you have free and unlimited access.Up-to-date review
丛书名称Springer Tracts in Modern Physics
图书封面Titlebook: Electroweak Physics at LEP and LHC;  Arno Straessner Book‘‘‘‘‘‘‘‘ 2010 Springer-Verlag Berlin Heidelberg 2010 Boson.Electroweak physics.Exp
描述During more than 10 years, from 1989 until 2000, the LEP accelerator and the four LEP experiments, ALEPH, DELPHI, L3 and OPAL, have taken data for a large amount of measurements at the frontier of particle physics. The main outcome is a thorough and successful test of the Standard Model of electroweak interactions. Mass and width of the Z and W bosons were measured precisely, as well as the Z and photon couplings to fermions and the couplings among gauge bosons. The rst part of this work will describe the most important physics results of the LEP experiments. Emphasis is put on the properties of the W boson, which was my main research eld at LEP. Especially the precise determination of its mass and its couplings to the other gauge bosons will be described. Details on physics effects like Colour Reconnection and Bose-Einstein Correlations in W-pair events shall be discussed as well. A conclusive summary of the current electroweak measurements, including low-energy results, as the pillars of possible future ndings will be given. The important contributions from Tevatron, like the measurement of the top quark and W mass, will round up the present day picture of electroweak particle ph
出版日期Book‘‘‘‘‘‘‘‘ 2010
关键词Boson; Electroweak physics; Experiment; Hadron; Higgs physics; Particle physics; Standard Model; W and Z bo
版次1
doihttps://doi.org/10.1007/978-3-642-05169-2
isbn_softcover978-3-642-26300-2
isbn_ebook978-3-642-05169-2Series ISSN 0081-3869 Series E-ISSN 1615-0430
issn_series 0081-3869
copyrightSpringer-Verlag Berlin Heidelberg 2010
The information of publication is updating

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https://doi.org/10.1007/978-3-642-36687-1described. The latter subject is however also relevant for the possible discovery of more than one neutral Higgs particle, since these are expected to differ in mass, coupling structure and CP properties.
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Theoretical Framework,, W and Z gauge bosons. The strong force is due to the . symmetry. Quantum Chromodynamics [2] (QCD) describe the interaction of quarks and the corresponding gauge bosons, the gluons. In the following, natural units, setting ., are chosen, and the relations . [3] and . may be used to convert between energy and space-time units.
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The LEP Experiments, Higgs boson or super-symmetric particles. This was, however, not achieved. This chapter introduces the LEP collider and the important aspect of the calibration of the collision energy. The main features of the LEP experiments are presented.
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Expectations for Electroweak Measurements at the LHC,his will further constrain the theoretical models and will probe the consistency of the Standard Model in finer detail. This chapter focuses therefore on the prospects for improved electroweak measurements by the LHC experiments.
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Higgs Physics at the LHC,described. The latter subject is however also relevant for the possible discovery of more than one neutral Higgs particle, since these are expected to differ in mass, coupling structure and CP properties.
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