English

Constraining the Compressed Top Squark and Chargino along the W Corridor

High Energy Physics - Phenomenology 2018-04-17 v2 High Energy Physics - Experiment

Abstract

Studying superpartner production together with a hard initial state radiation (ISR) jet has been a useful strategy for searches of supersymmetry with a compressed spectrum at the Large Hadron Collider (LHC). In the case of the top squark (stop), the ratio of the missing transverse momentum from the lightest neutralinos and the ISR momentum, defined as RˉM\bar{R}_M, turns out to be an effective variable to distinguish the signal from the backgrounds. It has helped to exclude the stop mass below 590 GeV along the top corridor where mt~mχ~10mtm_{\tilde{t}} - m_{\tilde{\chi}_1^0} \approx m_t. On the other hand, the current experimental limit is still rather weak in the WW corridor where mt~mχ~10mW+mbm_{\tilde{t}} - m_{\tilde{\chi}_1^0} \approx m_W +m_b. In this work we extend this strategy to the parameter region around the WW corridor by considering the one lepton final state. In this case the kinematic constraints are insufficient to completely determine the neutrino momentum which is required to calculate RˉM\bar{R}_M. However, the minimum value of RˉM\bar{R}_M consistent with the kinematic constraints still provides a useful discriminating variable, allowing the exclusion reach of the stop mass to be extended to 550\sim 550 GeV based on the current 36 fb1^{-1} LHC data. The same method can also be applied to the chargino search with mχ~1±mχ~10mWm_{\tilde{\chi}_1^\pm} -m_{\tilde{\chi}_1^0} \approx m_W because the analysis does not rely on bb jets. If no excess is present in the current data, a chargino mass of 300 GeV along the WW corridor can be excluded, beyond the limit obtained from the multilepton search.

Keywords

Cite

@article{arxiv.1711.07596,
  title  = {Constraining the Compressed Top Squark and Chargino along the W Corridor},
  author = {Hsin-Chia Cheng and Lingfeng Li and Qin Qin},
  journal= {arXiv preprint arXiv:1711.07596},
  year   = {2018}
}

Comments

29 pages,8 figures