Natural SUSY: LHC and Dark Matter direct detection experiments interplay
Natural SUSY: LHC and Dark Matter direct detection experiments interplay
Natural SUSY scenarios with a low value of the $\mu$ parameter, are characterised by a higgsino-like dark matter candidate, and a compressed spectrum for the lightest higgsinos. We explore the prospects for probing this scenario at the 13 TeV stage of the LHC via monojet searches, with various integrated luminosity options, and demonstrate how these results are affect by different assumptions on the achievable level of control on the experimental systematic uncertainties. The complementarity between collider and direct detection experiments (present and future) is also highlighted.
Barducci, D.
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Belyaev, Alexander
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Bharucha, Aoife
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Porod, Werner
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SANZ, Veronica
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20 March 2018
Barducci, D.
d0289bdd-ac34-493c-95cd-36d811070ecc
Belyaev, Alexander
6bdb9638-5ff9-4b65-a8f2-34bae3ac34b3
Bharucha, Aoife
fbc0da78-df5d-4600-9019-81937f0b4e62
Porod, Werner
9b4fd032-fd01-49c0-9c87-8052ebc813b5
SANZ, Veronica
2a1822ba-8d8d-434a-ac9b-b7091a7c3440
Barducci, D., Belyaev, Alexander, Bharucha, Aoife, Porod, Werner and SANZ, Veronica
(2018)
Natural SUSY: LHC and Dark Matter direct detection experiments interplay.
Antoniadis, Ignatios, Leontaris, George K. and Tamvakis, Kyriakos
(eds.)
In Proceedings of Science: 18th International Conference From the Planck Scale to the Electroweak Scale.
vol. 258,
Sissa Medialab.
1 pp
.
(doi:10.22323/1.258.0015).
Record type:
Conference or Workshop Item
(Paper)
Abstract
Natural SUSY scenarios with a low value of the $\mu$ parameter, are characterised by a higgsino-like dark matter candidate, and a compressed spectrum for the lightest higgsinos. We explore the prospects for probing this scenario at the 13 TeV stage of the LHC via monojet searches, with various integrated luminosity options, and demonstrate how these results are affect by different assumptions on the achievable level of control on the experimental systematic uncertainties. The complementarity between collider and direct detection experiments (present and future) is also highlighted.
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PLANCK 2015_015
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Published date: 20 March 2018
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Local EPrints ID: 431212
URI: http://eprints.soton.ac.uk/id/eprint/431212
PURE UUID: 2624538d-73ec-4155-bec6-84a2525e3d1f
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Date deposited: 28 May 2019 16:30
Last modified: 16 Mar 2024 03:55
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Contributors
Author:
D. Barducci
Author:
Aoife Bharucha
Author:
Werner Porod
Author:
Veronica SANZ
Editor:
Ignatios Antoniadis
Editor:
George K. Leontaris
Editor:
Kyriakos Tamvakis
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