Production of Light Higgs Pairs in 2-Higgs Doublet Models via the Higgs-strahlung Process at the LHC
M. Moretti, S. Moretti, F. Piccinini, R. Pittau, J. Rathsman

TL;DR
This paper demonstrates the potential to detect light Higgs pair production via Higgs-strahlung at the LHC in 2-Higgs Doublet Models, providing insights into Higgs self-couplings and model distinctions.
Contribution
It shows the feasibility of observing Higgs pair production through specific channels at the LHC and accessing Higgs self-couplings to differentiate models.
Findings
Detection of h pair production via Higgs-strahlung is feasible at the LHC.
Access to Higgs self-couplings lambda_(Hhh), lambda_(W+- H+- h), and lambda_(Z A h).
Distinguishing between standard and supersymmetric models based on these signals.
Abstract
At the Large Hadron Collider, we prove the feasibility to detect pair production of the lightest CP-even Higgs boson h of a Type II 2-Higgs Doublet Model through the process q \bar q' --> Vhh (Higgs-strahlung, V=W+-,Z), in presence of two h --> b \bar b decays. We also show that, through such production and decay channels, one has direct access to the following Higgs self-couplings, thus enabling one to distinguish between a standard and the Supersymmetric version of the above model: lambda_(Hhh) -- which constrains the form of the Higgs potential -- as well as lambda_(W+- H+- h) and lambda_(Z A h) -- which are required by gauge invariance. Unfortunately, such claims cannot be extended to the Minimal Supersymmetric Standard Model, where the extraction of the same signals is impossible.
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