First shot of the smoking gun: probing the electroweak phase transition in the 2HDM with novel searches for $A \to ZH$ in $\ell^+ \ell^- t \bar{t}$ and $\nu \nu b \bar{b}$ final states
Thomas Biek\"otter, Sven Heinemeyer, Jose Miguel No, Kateryna, Radchenko, Mar\'ia Olalla Olea Romacho, Georg Weiglein

TL;DR
This paper investigates how recent LHC searches for heavy scalar resonances in specific final states impact the parameter space of the two Higgs doublet model (2HDM), highlighting a potential experimental hint of electroweak baryogenesis and discussing future detection prospects.
Contribution
It analyzes the impact of new ATLAS search results on 2HDM parameter space, introduces the thdmTools package, and explores the connection to electroweak phase transition and baryogenesis.
Findings
ATLAS observed a 2.85σ local excess in the $ ext{ℓ}^+ ext{ℓ}^- t ar{t}$ channel around 650 GeV.
The excess aligns with 2HDM regions capable of a strong first-order electroweak phase transition.
Projections indicate increased sensitivity in future LHC runs for these signatures.
Abstract
Recently the ATLAS collaboration has reported the first results of searches for heavy scalar resonances decaying into a boson and a lighter new scalar resonance, where the boson decays leptonically and the lighter scalar decays into a top-quark pair, giving rise to final states. This had previously been identified as a smoking-gun signature at the LHC for a first-order electroweak phase transition (FOEWPT) within the framework of two Higgs doublet models (2HDMs). In addition, ATLAS also presented new limits where the boson decays into pairs of neutrinos and the lighter scalar resonance into bottom-quark pairs, giving rise to the final state. We analyze the impact of these new searches on the 2HDM parameter space, with emphasis on their capability to probe currently allowed 2HDM regions featuring a strong FOEWPT. We also study the…
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