Spin before mass at the LHC
arXiv:1110.6185 · doi:10.1007/JHEP01(2012)143
Abstract
What can be said about the spin of new particles without knowing their mass during an initial discovery phase at CERN? We consider this question in a topology where mass measurement is particularly difficult, , and introduce two new variables $\ctv$ and $\Av$ which we prove are both independent of the mass of . The variable $\ctv$ approximates the polar production angle of , and we find that it possesses greater statistical power in determining the spin of this particle than a previous, related variable, $\ctll$ \cite{Barr:2005dz}. $\Av$ is an asymmetry which can provide information about the couplings of a spin half . Because these variables can be used from the outset, without any knowledge of the masses of the new particles, we find here that it is possible to reverse the usual `mass before spin' determination timeline.
v2 JHEP version - minor changes to typesetting and some phrasing
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