Author:
Bruggisser Sebastian,von Harling Benedict,Matsedonskyi Oleksii,Servant Géraldine
Abstract
Abstract
The dilaton is predicted in various extensions of the standard model containing sectors with an approximate spontaneously-broken conformal invariance. As a Goldstone boson of a spontaneously broken symmetry, the dilaton can naturally be one of the lightest new physics particles, and therefore may be the first new physics imprint observed in collider experiments. In particular, it can arise in composite Higgs models which are often assumed to have approximate conformal invariance in the UV. The dilaton is then a composite state, generated by the same sector that produces the Higgs. We continue the exploration of composite dilaton signatures at the LHC, using the latest experimental data and analysing the future detection prospects. We elaborate on the connection of the dilaton properties with the properties of the Higgs potential, clarifying in particular the relation between the scale relevant for electroweak fine tuning and the scale controlling the dilaton couplings. This relation is then used to derive the experimental sensitivity to the dilaton in natural composite Higgs scenarios, which reaches ~ 3 TeV in dilaton mass for generic parameter choices. At the same time, we show that dilaton searches are a complementary direction to probe Higgs boson compositeness, with the sensitivity comparable or exceeding that of Higgs coupling measurements.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Reference90 articles.
1. R. Rattazzi and A. Zaffaroni, Comments on the holographic picture of the Randall-Sundrum model, JHEP 04 (2001) 021 [hep-th/0012248] [INSPIRE].
2. K. Blum, M. Cliche, C. Csaki and S.J. Lee, WIMP Dark Matter through the Dilaton Portal, JHEP 03 (2015) 099 [arXiv:1410.1873] [INSPIRE].
3. M. Kim, S.J. Lee and A. Parolini, WIMP Dark Matter in Composite Higgs Models and the Dilaton Portal, arXiv:1602.05590 [INSPIRE].
4. I. Baldes, Y. Gouttenoire, F. Sala and G. Servant, Supercool composite Dark Matter beyond 100 TeV, JHEP 07 (2022) 084 [arXiv:2110.13926] [INSPIRE].
5. P. Creminelli, A. Nicolis and R. Rattazzi, Holography and the electroweak phase transition, JHEP 03 (2002) 051 [hep-th/0107141] [INSPIRE].
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