PPT-SUSY Breaking in D-brane Models
Author : min-jolicoeur | Published Date : 2018-10-24
Beyond Orbifold Singularities Sebastián Franco Durham University José F Morales INFN Tor Vergata Sebastian Franco Why Dbranes at Singularities 2 Local approach
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SUSY Breaking in D-brane Models: Transcript
Beyond Orbifold Singularities Sebastián Franco Durham University José F Morales INFN Tor Vergata Sebastian Franco Why Dbranes at Singularities 2 Local approach to String Phenomenology. 2 04 06 Nm Time UTC 123 4 m 123 4 Figure 2 Breaking scale 05 01 02 brk c 1 05 01 02 03 brk c 2 05 01 02 03 brk c 3 05 01 02 03 brk c 4 Figure 3 brPage 6br EZ EZ v 05 10 87226 10 87225 10 87224 10 87223 cc c m 87222 s Figure 4 Total breaking rate ZZ b 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. Brane. Not. his brain!. . . . Paul K. Townsend. Department of Applied Mathematics and Theoretical Physics . Centre for Mathematical Sciences, Cambridge University. Zurich, November 13, 2015. Nor his . breaking ,R-symmetry breaking ,and . metastable. . vacua. in . supergravity. Yuji . Omura. (Kyoto Univ.). Hiroyuki Abe (. YITP,Kyoto. Univ.). Tatsuo Kobayashi(Kyoto Univ.). Introduction. . Supersymmetry. . Induced. . susy. . breaking. and De . Sitter. . supergravity. Dmitri. . Sorokin. , INFN Padova . Section. based. on . arXiv. :1511.03024 . with. I. . Bandos. , L. . Martucci. and M. . Tonin. Zhen-. hua. Zhao. ITP,CAS . . . Liu & Zhao . . arXiv:1312.7389. 1. Contents. Motivation. The Model. Phenomenological Consequence. Summary. 2. Higgs with 125 . GeV. mass. 3. SM is completed and self-consistent. Integrable. Systems and the Geometry of Scattering Amplitudes. Sebastián. Franco. City College of the CUNY. LMS Invited Lectures 2015. Durham University. Sebastian Franco. 2. Outline: Lectures 1, 2 and 3. Signatures of . Supersymmetry. . Without Prejudice. Berger, Conley, Cotta, Gainer, JLH, Le, Rizzo arXiv:0812.0980, 0903.4409, in progress. Supersymmetry at the LHC. SUSY discovery generally ‘easy’ at LHC. & THE LHC. NICK E. MAVROMATOS. KING’S COLLEGE LONDON & CERN-PH-TH. London Centre. for . Terauniverse. Studies (LCTS). AdV. 267352. OUTLINE. MOTIVATION:. CURRENT STATUS OF COSMOLOGICAL & COLLIDER (. Mitchell Workshop. Texas A&M University. May 12, 2014. Sunil Somalwar . Rutgers, the State University of New Jersey. USA. 2. Outline. TexasA&M-May14 CMS SUSY-Higgs Sunil Somalwar. Natsumi. Nagata . Based on J. . Hisano. , T. . Kuwahara. , N. Nagata, . 1302.2194 . (accepted for publication in PLB). .. J. . Hisano. , D. Kobayashi, T. . Kuwahara. , N. Nagata, . 1304.3651 . .. 15 May, 2013. 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). . Guchait. TIFR, Mumbai, . India. SUSY 16. University of Melbourne. 3-8. th. July,2016 . 25. th. Conference on. Supersymmetry. . and . Unification of Fundamental Interaction. ACFI EDM School November 2016. M.J. Ramsey-Musolf. U Mass Amherst. http://www.physics.umass.edu/acfi/. 2. Lecture IV Outline. General Considerations. BSM Motivation. Supersymmetry (Minimal Model). Higgs Portal CPV: 2 Higgs Doublet Model.
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