Skip to main content

Research Repository

Advanced Search

Effective operator bases for beyond Standard Model scenarios: an EFT compendium for discoveries

Banerjee, Upalaparna; Chakrabortty, Joydeep; Prakash, Suraj; Rahaman, Shakeel Ur; Spannowsky, Michael

Effective operator bases for beyond Standard Model scenarios: an EFT compendium for discoveries Thumbnail


Authors

Upalaparna Banerjee

Joydeep Chakrabortty

Suraj Prakash

Shakeel Ur Rahaman



Abstract

It is not only conceivable but likely that the spectrum of physics beyond the Standard Model (SM) is non-degenerate. The lightest non-SM particle may reside close enough to the electroweak scale that it can be kinematically probed at high-energy experiments and on account of this, it must be included as an infrared (IR) degree of freedom (DOF) along with the SM ones. The rest of the non-SM particles are heavy enough to be directly experimentally inaccessible and can be integrated out. Now, to capture the effects of the complete theory, one must take into account the higher dimensional operators constituted of the SM DOFs and the minimal extension. This construction, BSMEFT, is in the same spirit as SMEFT but now with extra IR DOFs. Constructing a BSMEFT is in general the first step after establishing experimental evidence for a new particle. We have investigated three different scenarios where the SM is extended by additional (i) uncolored, (ii) colored particles, and (iii) abelian gauge symmetries. For each such scenario, we have included the most-anticipated and phenomenologically motivated models to demonstrate the concept of BSMEFT. In this paper, we have provided the full EFT Lagrangian for each such model up to mass dimension 6. We have also identified the CP, baryon (B), and lepton (L) number violating effective operators.

Citation

Banerjee, U., Chakrabortty, J., Prakash, S., Rahaman, S. U., & Spannowsky, M. (2021). Effective operator bases for beyond Standard Model scenarios: an EFT compendium for discoveries. Journal of High Energy Physics, 2021(1), Article 28. https://doi.org/10.1007/jhep01%282021%29028

Journal Article Type Article
Acceptance Date Nov 8, 2020
Online Publication Date Jan 7, 2021
Publication Date 2021
Deposit Date Feb 5, 2021
Publicly Available Date Feb 8, 2021
Journal Journal of High Energy Physics
Print ISSN 1126-6708
Publisher Scuola Internazionale Superiore di Studi Avanzati (SISSA)
Peer Reviewed Peer Reviewed
Volume 2021
Issue 1
Article Number 28
DOI https://doi.org/10.1007/jhep01%282021%29028

Files

Published Journal Article (1.1 Mb)
PDF

Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/

Copyright Statement
Open Access,
© The Authors.
Article funded by SCOAP3

This article is distributed under the terms of the Creative Commons
Attribution License (CC-BY 4.0), which permits any use, distribution and reproduction in
any medium, provided the original author(s) and source are credited.





You might also like



Downloadable Citations