Expanding the Reach of Heavy Neutrino Searches at the LHC
arXiv:1708.03007 · doi:10.1016/j.physletb.2018.01.009
Abstract
The observation of neutrino oscillations establishes that neutrinos () have non-zero mass and provides one of the more compelling arguments for physics beyond the standard model (SM) of particle physics. We present a feasibility study to search for hypothetical Majorana neutrinos () with TeV scale masses, predicted by extensions of the SM to explain the small but non-zero mass, using vector boson fusion (VBF) processes at the 13 TeV LHC. In the context of the minimal Type-I seesaw mechanism (mTISM), the VBF production cross-section surpasses that of the Drell-Yan process at approximately TeV. We consider and production through VBF processes (e.g. ), with subsequent and decays to and , as benchmark cases to show the effectiveness of the VBF topology for seaches at the 13 TeV LHC. The requirement of a dilepton pair combined with four jets, two of which are identified as VBF jets with large separation in pseudorapidity and a TeV scale dijet mass, is effective at reducing the SM background. This criteria may provide expected exclusion bounds, at 95\% confidence level, of () TeV, assuming (1000) fb of 13 TeV data from the LHC and mixing . The use of the VBF topology to search for increases the discovery reach at the LHC, with expected significances greater than 5 (3) for masses up to 1.7 (2.05) TeV using 1000 fb of 13 TeV data from the LHC.
9 pages, 13 figures.arXiv admin note: text overlap with arXiv:1609.09765
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