4.4 Article

Measuring slepton masses and mixings at the LHC

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 1, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP01(2010)047

Keywords

Supersymmetry Phenomenology

Funding

  1. United States-Israel Binational Science Foundation (BSF) [2006071]
  2. NSF [PHY-0653656]
  3. United Kingdom's Science and Technology Facilities Council, Peterhouse
  4. University of Cambridge
  5. Israel Science Foundation (ISF) [1155/07, 377/07]
  6. German-Israeli Foundation for scientific research and development (GIF)
  7. Minerva Foundation

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Flavor physics may help us understand theories beyond the standard model. In the context of supersymmetry, if we can measure the masses and mixings of sleptons and squarks, we may learn something about supersymmetry and supersymmetry breaking. Here we consider a hybrid gauge-gravity supersymmetric model in which the observed masses and mixings of the standard model leptons are explained by a U(1) x U(1) flavor symmetry. In the supersymmetric sector, the charged sleptons have reasonably large flavor mixings, and the lightest is metastable. As a result, supersymmetric events are characterized not by missing energy, but by heavy metastable charged particles. Many supersymmetric events are therefore fully reconstructible, and we can reconstruct most of the charged sleptons by working up the long supersymmetric decay chains. We obtain promising results for both masses and mixings, and conclude that, given a favorable model, precise measurements at the LHC may help shed light not only on new physics, but also on the standard model flavor parameters.

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