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capitalize Standard Model
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Expander authored and Expander committed Nov 19, 2014
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Expand Up @@ -189,7 +189,7 @@ \section{Introduction}
space-time symmetries of the Poincar\'e
group, which still has scattering in the resulting quantum theory \cite{Coleman:1967ad,Haag:1974qh}. This leads many to suspect that
SUSY may be realized in nature in some form. In particular
supersymmetric extensions of the standard model (SM) where SUSY is broken
supersymmetric extensions of the Standard Model (SM) where SUSY is broken
at the TeV scale have been proposed to solve the hierarchy
problem \cite{Weinberg:1975gm, Weinberg:1979bn, Gildener:1976ai,
Susskind:1978ms, 'tHooft:1980xb}, allow gauge coupling
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theory.

Detailed phenomenological studies have been carried out for scenarios
within the minimal supersymmetric standard model (MSSM), for a review
within the minimal supersymmetric Standard Model (MSSM), for a review
see \cite{Chung:2003fi}. Such work has been greatly aided by public
spectrum generators for the MSSM
\cite{Allanach:2001kg,Porod:2003um,Djouadi:2002ze,Baer:1993ae,Chowdhury:2011zr},
Expand All @@ -213,7 +213,7 @@ \section{Introduction}
parameters. Beyond the MSSM there are also two public spectrum
generators \cite{Ellwanger:2004xm, Ellwanger:2005dv,
Ellwanger:2006rn,Ellwanger:2008py, Allanach:2013kza} for the next to
minimal supersymmetric standard model (NMSSM) (for
minimal supersymmetric Standard Model (NMSSM) (for
recent reviews see \cite{Ellwanger:2009dp, Maniatis:2009re}).


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classic jets plus missing transverse energy signature, have not been
observed, substantially raising the lower limit on sparticle masses
(see e.g.~\cite{Aad:2013wta,Chatrchyan:2014lfa}). No other signature
of beyond the standard model (BSM) physics has been observed, leaving
of beyond the Standard Model (BSM) physics has been observed, leaving
the fundamental questions which motivated BSM physics
unanswered. Secondly ATLAS and CMS discovered \cite{ATLAS:2012ae,
Chatrchyan:2012tx} a light Higgs of $125$ GeV, within the mass range
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