PPT-Introduction to Gauge Higgs unification with a graded Lie a
Author : min-jolicoeur | Published Date : 2016-11-28
2011 10 7 Academia Sinica Taiwan Jubin Park NTHU Collaboration with Prof WeFu Chang Based on D B Fairlie PLB 821 G Bhattacharyya arxiv09105095
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Introduction to Gauge Higgs unification with a graded Lie a: Transcript
2011 10 7 Academia Sinica Taiwan Jubin Park NTHU Collaboration with Prof WeFu Chang Based on D B Fairlie PLB 821 G Bhattacharyya arxiv09105095 . (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 . Princeton University. Princeton Plasma Physics Laboratory Colloquium. September . 26, . 2012. Is it the Higgs Boson?. Many Princeton undergraduate students have worked on the CMS experiment over the years. . spin . ½ Higgs. -. related particles, mass ~ . m. Higgs. 1. Roland E. Allen, . Minji. Lei , Johannes Kroll, and Joshua . Stenzel. Department of Physics and Astronomy, Texas A&M University. 1. . with Type-II. Nambu. -Goldstone Boson. . Based on arXiv:1102.4145v2 [. hep. -ph]. Yusuke Hama. . (Univ. Tokyo). Tetsuo . Hatsuda. (Univ. Tokyo). Shun Uchino (Kyoto Univ.). 4/20 (2011). . Dense Strange Nuclei and Compressed Baryonic Matter. . Aungshuman. . Zaman. Department of Physics and Astronomy. Stony Brook University. October 11, 2010. What Is This Talk All About. Why is the search for the Higgs Boson important?. Gauge theory and standard model.. B-L Extension of the SM. 1. Shaaban. Khalil. Centre . for . Theoretical . Physics . British University in Egypt. Outline. TeV. scale . B-L. : Minimal bottom-up extension of the SM. B-L. signatures at LHC. (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 . TexPoint fonts used in EMF. . Read the TexPoint manual before you delete this box.: . A. A. A. A. A. A. A. A. A. A. A. A. Overview. Final lecture today! Can cover the following topics today: . . Sfermion. It’s good to talk to each other. Symmetry and quantum mechanics. Schrodinger and . Weyl. QM=“Applied Group Theory”—operators are generators of symmetries: p=. ħ. /. i. d/dx ; H=. iħd. /. dt. Natsumi. Nagata . 1. st. October, 2013. KEK-PH 2013 FALL. Nagoya University/ University of Tokyo. J. . Hisano. , T. . Kuwahara. , N. Nagata, Phys. . Lett. . . B723. (2013) 324.. Grand Unified Theory (GUT). (probably). Not just another fundamental particle…. July 27, 2012. Purdue QuarkNet Summer Workshop. 1. Matthew Jones. Purdue University. 27-July-2012. The Standard Model. Charge. 1. st. family. 2. Duality. Lisa Randall. w/. Csaba. . Csaki. John . Terning. Where are we?. Exploring . TeV. scale. Quite . effectively . Already placing bounds on strongly interacting SUSY partners. Not Surprising. (General Overview). 1. Shaaban Khalil. Center . for . Fundamental Physics . Zewail. City of Science and Technology. The Standard Model. Standard . Model . is defined by. 4-dimension . QFT (Invariant under Poincare group. Ranjan. . Modak. &. Debabrata. . Pramanik. Outline of talk... SU(5). Sub-algebra of SU(5). Branching Rule for diff rep of SU(5). Unification and why SU(5)?. Proton decay. SU(5). Cartan. generators for SU(5): 4 rank algebra its has 4 simple roots and 4 .
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