arXiv · 1401.1462
Systematically Searching for New Resonances at the Energy Frontier using Topological Models
Abstract
We propose a new strategy to systematically search for new physics processes in particle collisions at the energy frontier. An examination of all possible topologies which give identifiable resonant features in a specific final state leads to a tractable number of `topological models' per final state and gives specific guidance for their discovery. Using one specific final state, $\ell\ell jj$, as an example, we find that the number of possibilities is reasonable and reveals simple, but as-yet-unexplored, topologies which contain significant discovery potential. We propose analysis techniques and estimate the sensitivity for $pp$ collisions with $\sqrt{s}=14$ TeV and $\mathcal{L}=300$ fb$^{-1}$.
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Mohammad Abdullah, Eric Albin, Anthony DiFranzo, Meghan Frate, Craig Pitcher, Chase Shimmin, Suneet Upadhyay, James Walker, Pierce Weatherly, Patrick J. Fox, Daniel Whiteson. 2014-01-07. Systematically Searching for New Resonances at the Energy Frontier using Topological Models. https://doi.org/10.1103/physrevd.89.095002
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