Opening Up the Compressed Region of Top Squark Searches at 13 TeV LHC
- Creators
- An, Haipeng
- Wang, Lian-Tao
Abstract
Light top superpartners play a key role in stabilizing the electroweak scale in supersymmetric theories. For R-parity conserved supersymmetric models, traditional searches are not sensitive to the compressed regions. In this Letter, we propose a new method targeting this region, with top squark and neutralino mass splitting ranging from m_(t˜)−m_χ ≳ m_t to about 20 GeV. In particular, we focus on the signal process in which a pair of top squarks are produced in association with a hard jet, and we define a new observable RM whose distribution has a peak in this compressed region. The position of the peak is closely correlated with m_(t˜). We show that for the 13 TeV LHC with a luminosity of 3000 fb^(−1), this analysis can extend the reach of the top squark in the compressed region to m_(t˜) around 800 GeV.
Additional Information
© 2015 American Physical Society. (Received 9 June 2015; revised manuscript received 5 October 2015; published 29 October 2015). We would like to thank Clifford Cheung, Lance Dixon, David Kosower, Matthew Low, Yue Zhang, and Fei Gao for the useful discussions. H. A. is supported by the Walter Burke Institute at Caltech and by DOE Grant No. DE-SC0011632. L.-T. W. is supported by DOE Grant No. DE-SC0003930.Attached Files
Published - PhysRevLett.115.181602.pdf
Submitted - 1506.00653v1.pdf
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Additional details
- Alternative title
- Opening up the compressed region of stop searches at 13 TeV LHC
- Eprint ID
- 59124
- Resolver ID
- CaltechAUTHORS:20150731-183158582
- Walter Burke Institute for Theoretical Physics, Caltech
- Department of Energy (DOE)
- DE-SC0011632
- Department of Energy (DOE)
- DE-SC0003930
- Created
-
2015-08-06Created from EPrint's datestamp field
- Updated
-
2021-11-10Created from EPrint's last_modified field
- Caltech groups
- Walter Burke Institute for Theoretical Physics
- Other Numbering System Name
- CALT-TH
- Other Numbering System Identifier
- 2015-028