PPT-Higgs Factories based on:

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LEP3 circular e e machine SAPPHIRE gg collider Mayda M Velasco Northwestern University BNL Seminar Jan 17 2013 Higgs Discovery in July 2012 H WW H bb

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LEP3 circular e e machine SAPPHIRE gg collider Mayda M Velasco Northwestern University BNL Seminar Jan 17 2013 Higgs Discovery in July 2012 H WW H bb. L/O – To judge how dangerous working conditions were for children in factories. Starter. – Why do you think factory owners liked to employ children to work in them?. Before Factories. Before the era of the . (s). Why do we need them?. What do they look like?. Have we found them?. γ. Quantum Electrodynamics. predicts one . massless. . spin-1. . gauge boson. PHOTON. g. Quantum . Chromodynamics. . predicts . 2014. Overview. Review of the Standard Model and the Higgs boson. Creating Higgs bosons. The discovery of a “Higgs-like” particle on July 4, 2012. Is it really the Higgs boson?. The Standard Model. L/O – To explain how factories caused the population of towns to increase. Starter. – Was the invention of factories good or bad for Britain? Look at last lessons work!. Britain in 1750. Britain in 1900. : data . vs. theory. Joey Huston. Bruce . Mellado. 1. Higgs(->. gg. )+jets. Most of the excess observed for Higgs production is in >=1 jet final states. Maybe CMS does not see as large of an excess. 2. (7). Michael Jay Perez. Phenomenology 2015. May 5. , 2015. Arxiv. : 1412.6107 / 1311.4553. Following the Hierarchy. Up-type quarks display a large hierarchy. Follow this hierarchy to the Neutrino Sector. epton asymmetry in. . the. . 3-3-1 . model. . with. . right-handed. neutrinos. N. T. . Thuy. Yonsei. University. Jindo. Workshop. , Sep . 20~23, . 2012. 1. O. utline. I. . Introduction. II. . A review of the model. December 12th-16th, 2011. Table of Contents. CERN Higgs boson Flash Report. . Executive Summary & Findings 3-4. Background 5. Pre-announcement overview 6. Announcement overview 7. S. Dawson. CMS HH Workshop. January 18, 2016. 1. S. Dawson. Outline. Why measure the Higgs-self couplings?. What do we expect?. Standard Model. Issues with the top mass dependence. Beyond the Standard Model. Kei . Yagyu. . (National Central U). M. Aoki, S. . Kanemura. , KY, PRD85 (2012), . S. . Kanemura. , KY, PRD85 (2012), . M. Aoki, S. . Kanemura. , M. Kikuchi, KY, PLB714 (2012), . M. Aoki, S. . Kanemura. In particle physics , elementary particles and forces give rise to the world around us.. The two main elementary particles which form the major constituent of matter are the LEPTONS and QUARKS.. Quark+Quark=hadrons [protons&neutrons].. W. Verkerke. (NIKHEF). Introduction. Enormous effort to search for Higgs signature in many decay channels. Results .  many plots with signal, . background expectations, each with . (systematic) uncertainties, and data. M. Veltman. NIKHEF. Amsterdam. Cern, 4 dec. 2009. Higgs search. Higgs hunting. In 1974 I asked myself: if the Higgs is all around us in the vacuum. we should really be able to see it. Since the Higgs field in the vacuum. and LHC. :. la . grande. . sfida. . della. . Nuova. . Fisica. Antonio Masiero. Univ. di Padova e INFN. Univ. di Napoli, . Dipt. . Di . Fisica. , 15 . giugno. 2012. FCNC, CP ≠, (g-2), (. ).

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