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New physics at the Large Hadron Collider

Author: Harald Fritzsch
Publisher: Hackensack, NJ : World Scientific, [2017] ©2017
Edition/Format:   eBook : Document : Conference publication : EnglishView all editions and formats
Summary:
"The Standard Theory of Particle Physics describes successfully the observed strong and electroweak interactions, but it is not a final theory of physics, since many aspects are not understood: (1) How can gravity be introduced in the Standard Theory? (2) How can we understand the observed masses of the leptons and quarks as well as the flavor mixing angles? (3) Why are the masses of the neutrinos much smaller than  Read more...
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Genre/Form: Electronic books
Conference papers and proceedings
Congresses
Additional Physical Format: Print version:
Conference on New Physics at the Large Hadron Collider (2016 : Nanyang Technological University).
New physics at the Large Hadron Collider.
Hackensack, NJ : World Scientific, [2017]
(DLC) 2016044199
(OCoLC)959922666
Material Type: Conference publication, Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Harald Fritzsch
ISBN: 9789813145504 9813145501 9789813145511 981314551X
OCLC Number: 962052034
Notes: Proceedings of the Conference on New Physics at the Large Hadron Collider, held at the Nanyang Technological University, Singapore, February 26-March 4, 2016.
Description: 1 online resource
Contents: Accelerator considerations of large circular colliders / Alex Chao --
Physics potential and motivations for a muon collider / Mario Greco --
Pentaquarks and possible anomalies at LHCb / George Laferty --
Neutrino masses and SO10 unification / P. Minkowski --
Neutrino experiments: hierarchy, CP, CPT / Manmohan Gupta, Monika Randhawa and Mandip Singh --
Constraining the texture mass matrices / Gulsheen Ahuja --
Rare B-meson decays at the crossroads / Ahmed Ali --
Exploring the standard model at the LHC / Brigitte Vachon --
Meson/baryon/tetraquark supersymmetry from superconformal algebra and light-front holography / Stanley J. Brodsky, Guy F. de Teramond, Hans Gunter Dosch and Cedric Lorce --
The spin-charge-family theory / Norma Susana Mankoc Borstnik --
Search for direct CP violation in baryonic b-hadron decays / C.Q. Geng and Y.K. Hsiao --
New physics and astrophysical neutrinos in IceCube / Atsushi Watanabe --
The 750 GeV diphoton excess and SUSY / S. Heinemeyer --
Constraints on the [omega pi] form factor from analyticity and unitarity / B. Ananthanarayan, Irinel Caprini and Bastian Kubis --
Dynamical tuning of the initial condition in small field inflations-can we testify the CW mechanism in the universe / Satoshi Iso --
Physics of Higgs boson family / Ngee-Pong Chang --
On the breaking of mu-tau flavor symmetry / Zhen-Hua Zhao --
Neutrino mass ordering in future neutrinoless double beta decay experiments / Jue Zhang --
Predicting the CP-phase for neutrinos / Eiichi Takasugi --
Sum rules for leptons / Martin Spinrath --
Composite weak bosons at the Large Hadron Collider / Harald Fritzsch --
Searching for composite Higgs models at the LHC / Thomas Flacke --
Gauge-Higgs EW and grand unification / Yutaka Hosotani --
Colour octet extension of 2HDM / German Valencia --
New physics/resonances in vector boson scattering at the LHC / Jurgen Reuter, Wolfgang Kilian, Thorsten Ohl and Marco Sekulla --
Dimensional regularization is generic / Kazuo Fujikawa --
A de-gauging approach to physics beyond the standard model / Chi Xiong --
Extension of standard model in multi-spinor field formalism --
visible and dark sectors / Ikuo S. Sogami --
Aspects of string phenomenology and new physics / I. Antoniadis --
Cosmological constant vis-a-vis dynamical vacuum: bold challenging the LCDM / Joan Sola.
Other Titles: Proceedings of the Conference on New Physics at the Large Hadron Collider
Responsibility: editor, Harald Fritzsch.

Abstract:

"The Standard Theory of Particle Physics describes successfully the observed strong and electroweak interactions, but it is not a final theory of physics, since many aspects are not understood: (1) How can gravity be introduced in the Standard Theory? (2) How can we understand the observed masses of the leptons and quarks as well as the flavor mixing angles? (3) Why are the masses of the neutrinos much smaller than the masses of the charged leptons? (4) Is the new boson, discovered at CERN, the Higgs boson of the Standard Theory or an excited weak boson? (5) Are there new symmetries at very high energy, e.g. a broken supersymmetry? (6) Are the leptons and quarks point-like or composite particles? (7) Are the leptons and quarks at very small distances one-dimensional objects, e.g. superstrings? This proceedings volume comprises papers written by the invited speakers discussing the many important issues of the new physics to be discovered at the Large Hadron Collider"--

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