Di-boson signatures as standard candles for partial compositeness

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作者
Alexander Belyaev
Giacomo Cacciapaglia
Haiying Cai
Gabriele Ferretti
Thomas Flacke
Alberto Parolini
Hugo Serodio
机构
[1] University of Southampton,School of Physics & Astronomy
[2] Rutherford Appleton Laboratory,Particle Physics Department
[3] Univerity of Lyon,Department of Physics
[4] Université Lyon 1,Department of Physics
[5] CNRS/IN2P3,Department of Astronomy and Theoretical Physics
[6] IPNL,undefined
[7] Chalmers University of Technology,undefined
[8] Center for Theoretical Physics of the Universe,undefined
[9] Institute for Basic Science (IBS),undefined
[10] Korea University,undefined
[11] Lund University,undefined
关键词
Technicolor and Composite Models; Beyond Standard Model; Global Symmetries; Sigma Models;
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摘要
Composite Higgs Models are often constructed including fermionic top partners with a mass around the TeV scale, with the top partners playing the role of stabilizing the Higgs potential and enforcing partial compositeness for the top quark. A class of models of this kind can be formulated in terms of fermionic strongly coupled gauge theories. A common feature they all share is the presence of specific additional scalar resonances, namely two neutral singlets and a colored octet, described by a simple effective Lagrangian. We study the phenomenology of these scalars, both in a model independent and model dependent way, including the bounds from all the available searches in the relevant channels with di-boson and di-top final states. We develop a generic framework which can be used to constrain any model containing pseudo-scalar singlets or octets. Using it, we find that such signatures provide strong bounds on the compositeness scale complementary to the traditional EWPT and Higgs couplings deviations. In many cases a relatively light scalar can be on the verge of discovery as a first sign of new physics.
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