Natural Next-to-Minimal Supersymmetric Standard Model (nNMSSM) is featured by
predicting one CP-even Higgs boson satisfying $m_h_1 120 \,\rm
GeV$ and Higgsinos lighter than about 300 GeV, and consequently the cross
section for DM-nucleon scattering in this scenario is usually quite large. We
study the diphoton signal of the light Higgs boson in nNMSSM by considering the
tight constraints from the latest LUX and PandaX-II experiments, and we
conclude that the optimal value of the signal rate at 8 TeV LHC is greatly
reduced in comparison with earlier predictions. For example, previous studies
indicated that the rate may exceed $120 \,fb$ for $m_h_1 80
\,GeV$, while it is at most $25 \,fb$ if the lightest neutralino in
the scenario is fully responsible for the measured DM relic density. We also
investigate the case of $m_h_1 98 \,GeV$ which is hinted by the
excesses of the LEP analysis on $Z b b$ signal and the CMS analysis on
the diphoton signal. We conclude that nNMSSM can explain simultaneously the
excesses at $1\sigma$ level without violating any known constraints.
Описание
The diphoton signal of the light Higgs boson in Natural NMSSM
%0 Journal Article
%1 cao2016diphoton
%A Cao, Junjie
%A Guo, Xiaofei
%A He, Yangle
%A Wu, Peiwen
%A Zhang, Yang
%D 2016
%K NMSSM anomaly diphoton higgs singlet
%R 10.1103/PhysRevD.95.116001
%T The diphoton signal of the light Higgs boson in Natural NMSSM
%U http://arxiv.org/abs/1612.08522
%X Natural Next-to-Minimal Supersymmetric Standard Model (nNMSSM) is featured by
predicting one CP-even Higgs boson satisfying $m_h_1 120 \,\rm
GeV$ and Higgsinos lighter than about 300 GeV, and consequently the cross
section for DM-nucleon scattering in this scenario is usually quite large. We
study the diphoton signal of the light Higgs boson in nNMSSM by considering the
tight constraints from the latest LUX and PandaX-II experiments, and we
conclude that the optimal value of the signal rate at 8 TeV LHC is greatly
reduced in comparison with earlier predictions. For example, previous studies
indicated that the rate may exceed $120 \,fb$ for $m_h_1 80
\,GeV$, while it is at most $25 \,fb$ if the lightest neutralino in
the scenario is fully responsible for the measured DM relic density. We also
investigate the case of $m_h_1 98 \,GeV$ which is hinted by the
excesses of the LEP analysis on $Z b b$ signal and the CMS analysis on
the diphoton signal. We conclude that nNMSSM can explain simultaneously the
excesses at $1\sigma$ level without violating any known constraints.
@article{cao2016diphoton,
abstract = {Natural Next-to-Minimal Supersymmetric Standard Model (nNMSSM) is featured by
predicting one CP-even Higgs boson satisfying $m_{h_1} \lesssim 120 \,{\rm
GeV}$ and Higgsinos lighter than about 300 GeV, and consequently the cross
section for DM-nucleon scattering in this scenario is usually quite large. We
study the diphoton signal of the light Higgs boson in nNMSSM by considering the
tight constraints from the latest LUX and PandaX-II experiments, and we
conclude that the optimal value of the signal rate at 8 TeV LHC is greatly
reduced in comparison with earlier predictions. For example, previous studies
indicated that the rate may exceed $120 \,{\rm fb}$ for $m_{h_1} \simeq 80
\,{\rm GeV}$, while it is at most $25 \,{\rm fb}$ if the lightest neutralino in
the scenario is fully responsible for the measured DM relic density. We also
investigate the case of $m_{h_1} \simeq 98 \,{\rm GeV}$ which is hinted by the
excesses of the LEP analysis on $Z \bar{b} b$ signal and the CMS analysis on
the diphoton signal. We conclude that nNMSSM can explain simultaneously the
excesses at $1\sigma$ level without violating any known constraints.},
added-at = {2019-06-26T17:23:32.000+0200},
author = {Cao, Junjie and Guo, Xiaofei and He, Yangle and Wu, Peiwen and Zhang, Yang},
biburl = {https://www.bibsonomy.org/bibtex/2fc40625b2e97e8b11b8fea0c9ff93119/diragami},
description = {The diphoton signal of the light Higgs boson in Natural NMSSM},
doi = {10.1103/PhysRevD.95.116001},
interhash = {4b9d9ab6e114b5ec60fb7bef75c8d7ca},
intrahash = {fc40625b2e97e8b11b8fea0c9ff93119},
keywords = {NMSSM anomaly diphoton higgs singlet},
note = {cite arxiv:1612.08522Comment: 16 pages, 6 figures, matches PRD published version},
timestamp = {2019-06-26T17:44:41.000+0200},
title = {The diphoton signal of the light Higgs boson in Natural NMSSM},
url = {http://arxiv.org/abs/1612.08522},
year = 2016
}