Strong Electroweak Symmetry Breaking in the Large Hadron Collider Era

Strong Electroweak Symmetry Breaking in the Large Hadron Collider Era

Author: Jared Andrew Evans

Publisher:

Published: 2011

Total Pages:

ISBN-13: 9781267023438

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With the Large Hadron Collider collecting data, both the pursuit of novel detection techniques and the exploration of new ideas are more important than ever. Novel detection techniques are essential in order for the community to garner the most worth from the machine. New ideas are needed both to expand the boundaries of what could be observed and to foster the creative mindset of the community that moves particle physics into fascinating, and often unexpected, directions. Discovering whether electroweak symmetry is broken strongly or weakly is one of the most pressing questions to be answered. Exploring the possibility of strong electroweak symmetry breaking is the topic of this work. The first of two major sectors in this work concerns the theory of conformal technicolor. We present the low energy minimal model for conformal technicolor and verify that it can satisfy current constraints from experiment. We will also provide a UV completion for this model, which realistically extends the sector with high-energy supersymmetry. Two complete models of flavor are presented. This is the first example of a complete, consistent model of strong electroweak symmetry breaking. The second of the two sectors discusses experimental signatures arising in a large class of general technicolor models at the Large Hadron Collider. The possible existence of narrow scalar states that can be produced via gluon-gluon fusion is first discussed. These states can decay into exotic final states of multiple electroweak gauge bosons, third generation particles and even light composite Higgs particles. A two Higgs doublet model is proposed as an effective way to model these exciting states. Lastly, we discuss the array of possible final states and their possible discovery.


Strong Coupling Gauge Theories in LHC Era

Strong Coupling Gauge Theories in LHC Era

Author: H. Fukuya

Publisher: World Scientific

Published: 2011

Total Pages: 459

ISBN-13: 9814329525

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The purpose of the Workshop is to have intensive discussions on both theoretical and phenomenological aspects of strong coupling gauge theories (SCGTs), with particular emphasis on the model buildings to be tested in the LHC experiments. Dynamical issues are discussed in lattice simulations and various analytical methods. This proceedings volume is a collection of the presentations made at the Workshop by many leading scientists in the field.


Strong Coupling Gauge Theories In Lhc Era - Proceedings Of The Workshop In Honor Of Toshihide Maskawa's 70th Birthday And 35th Anniversary Of Dynamical Symmetry Breaking In Scgt

Strong Coupling Gauge Theories In Lhc Era - Proceedings Of The Workshop In Honor Of Toshihide Maskawa's 70th Birthday And 35th Anniversary Of Dynamical Symmetry Breaking In Scgt

Author: Masayasu Harada

Publisher: World Scientific

Published: 2011-01-19

Total Pages: 459

ISBN-13: 9814462519

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The purpose of the Workshop is to have intensive discussions on both theoretical and phenomenological aspects of strong coupling gauge theories (SCGTs), with particular emphasis on the model buildings to be tested in the LHC experiments. Dynamical issues are discussed in lattice simulations and various analytical methods. This proceedings volume is a collection of the presentations made at the Workshop by many leading scientists in the field.


Electroweak Symmetry Breaking by Strong Dynamics and the Collider Phenomenology

Electroweak Symmetry Breaking by Strong Dynamics and the Collider Phenomenology

Author:

Publisher:

Published: 2002

Total Pages:

ISBN-13:

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We discuss the possible signatures in the electroweak symmetry breaking sector by new strong dynamics at future hadron colliders such as the Tevatron upgrade, the LHC and VLHC, and ee− linear colliders. Examples include a heavy Higgs-like scalar resonance, a heavy Technicolor-like vector resonance and pseudo-Goldstone states, non-resonance signatures via enhanced gauge-boson scattering and fermion compositeness.


Elementary-Particle Physics

Elementary-Particle Physics

Author: National Research Council

Publisher: National Academies Press

Published: 1998-04-01

Total Pages: 211

ISBN-13: 0309174163

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Part of the Physics in a New Era series of assessments of the various branches of the field, Elementary-Particle Physics reviews progress in the field over the past 10 years and recommends actions needed to address the key questions that remain unanswered. It explains in simple terms the present picture of how matter is constructed. As physicists have probed ever deeper into the structure of matter, they have begun to explore one of the most fundamental questions that one can ask about the universe: What gives matter its mass? A new international accelerator to be built at the European laboratory CERN will begin to explore some of the mechanisms proposed to give matter its heft. The committee recommends full U.S. participation in this project as well as various other experiments and studies to be carried out now and in the longer term.


Perspectives on Supersymmetry II

Perspectives on Supersymmetry II

Author: G. L. Kane

Publisher: World Scientific

Published: 2010

Total Pages: 604

ISBN-13: 9814307505

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Supersymmetry is at an exciting stage of development. It extends the Standard Model of particle physics into a more powerful theory that both explains more and allows more questions to be addressed. Most importantly, it opens a window for studying and testing fundamental theories at the Planck scale. Experimentally we are finally entering the intensity and energy and sensitivity regions where superpartners and supersymmetric dark matter candidates are likely to be detected, and then studied. There has been progress in understanding the remarkable physics implications of supersymmetry, including the derivation of the Higgs mechanism, the unification of the Standard Model forces, cosmological connections such as a candidate for the cold dark matter of the universe and consequences for understanding the cosmological history of the universe, and more. This volume begins with an excellent pedagogical introduction to the physics and methods and formalism of supersymmetry which is accessible to anyone with a basic knowledge of the Standard Model of particle physics.Next is an overview of open questions, followed by chapters on topics such as how to detect superpartners and tools for studying them, the current limits on superpartner masses as we enter the LHC era, the lightest superpartner as a dark matter candidate in thermal and non-thermal cosmological histories, and associated Z'' physics. Most chapters have been extended and updated from the earlier edition and some are new. This superb book will allow interested physicists to understand the coming experimental and theoretical progress in supersymmetry and the implications of discoveries of superpartners, and will also help students and workers to quickly learn new aspects of supersymmetry they want to pursue.


Large Hadron Collider, The

Large Hadron Collider, The

Author: Bonnie Juettner Fernandes

Publisher: Norwood House Press

Published: 2013-07-01

Total Pages: 50

ISBN-13: 1599536005

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What really happened during the Big Bang? Why did matter form? Why do particles have mass? To answer these questions, scientists and engineers have worked together to build the largest and most powerful particle accelerator in the world: the Large Hadron Collider. Correlates with STEM and Physics instruction. Includes glossary, websites, and bibliography for further reading.


Advanced Analysis Methods in Particle Physics

Advanced Analysis Methods in Particle Physics

Author:

Publisher:

Published: 2010

Total Pages: 42

ISBN-13:

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Each generation of high energy physics experiments is grander in scale than the previous - more powerful, more complex and more demanding in terms of data handling and analysis. The spectacular performance of the Tevatron and the beginning of operations of the Large Hadron Collider, have placed us at the threshold of a new era in particle physics. The discovery of the Higgs boson or another agent of electroweak symmetry breaking and evidence of new physics may be just around the corner. The greatest challenge in these pursuits is to extract the extremely rare signals, if any, from huge backgrounds arising from known physics processes. The use of advanced analysis techniques is crucial in achieving this goal. In this review, I discuss the concepts of optimal analysis, some important advanced analysis methods and a few examples. The judicious use of these advanced methods should enable new discoveries and produce results with better precision, robustness and clarity.