Saved in:
Bibliographic Details
Main Authors: Ahmed, Aqeel, Chacko, Zackaria, Flood, Ina, Kilic, Can, Najjari, Saereh
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2412.15067
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908374640099328
author Ahmed, Aqeel
Chacko, Zackaria
Flood, Ina
Kilic, Can
Najjari, Saereh
author_facet Ahmed, Aqeel
Chacko, Zackaria
Flood, Ina
Kilic, Can
Najjari, Saereh
contents We perform a model-independent analysis of the dimension-six terms that are generated in the low energy effective theory when a hidden sector that communicates with the Standard Model (SM) through a specific portal operator is integrated out. We work within the Standard Model Effective Field Theory (SMEFT) framework and consider the Higgs, neutrino and hypercharge portals. We find that, for each portal, the forms of the leading dimension-six terms in the low-energy effective theory are fixed and independent of the dynamics in the hidden sector. For the Higgs portal, we find that two independent dimension-six terms are generated, one of which has a sign that, under certain conditions, is fixed by the requirement that the dynamics in the hidden sector be causal and unitary. In the case of the neutrino portal, for a single generation of SM fermions and assuming that the hidden sector does not violate lepton number, a unique dimension-six term is generated, which corresponds to a specific linear combination of operators in the Warsaw basis. For the hypercharge portal, a unique dimension-six term is generated, which again corresponds to a specific linear combination of operators in the Warsaw basis. For both the neutrino and hypercharge portals, under certain conditions, the signs of these terms are fixed by the requirement that the hidden sector be causal and unitary. We perform a global fit of these dimension-six terms to electroweak precision observables, Higgs measurements and diboson production data and determine the current bounds on their coefficients.
format Preprint
id arxiv_https___arxiv_org_abs_2412_15067
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle General form of effective operators from hidden sectors
Ahmed, Aqeel
Chacko, Zackaria
Flood, Ina
Kilic, Can
Najjari, Saereh
High Energy Physics - Phenomenology
We perform a model-independent analysis of the dimension-six terms that are generated in the low energy effective theory when a hidden sector that communicates with the Standard Model (SM) through a specific portal operator is integrated out. We work within the Standard Model Effective Field Theory (SMEFT) framework and consider the Higgs, neutrino and hypercharge portals. We find that, for each portal, the forms of the leading dimension-six terms in the low-energy effective theory are fixed and independent of the dynamics in the hidden sector. For the Higgs portal, we find that two independent dimension-six terms are generated, one of which has a sign that, under certain conditions, is fixed by the requirement that the dynamics in the hidden sector be causal and unitary. In the case of the neutrino portal, for a single generation of SM fermions and assuming that the hidden sector does not violate lepton number, a unique dimension-six term is generated, which corresponds to a specific linear combination of operators in the Warsaw basis. For the hypercharge portal, a unique dimension-six term is generated, which again corresponds to a specific linear combination of operators in the Warsaw basis. For both the neutrino and hypercharge portals, under certain conditions, the signs of these terms are fixed by the requirement that the hidden sector be causal and unitary. We perform a global fit of these dimension-six terms to electroweak precision observables, Higgs measurements and diboson production data and determine the current bounds on their coefficients.
title General form of effective operators from hidden sectors
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2412.15067