Bridging the divide: axion searches and axino phenomenology at colliders
Gabe Hoshino, Kristin Dona, Keisuke Harigaya, David W. Miller, Jan T. Offermann, Bianca Pol, Benjamin Rosser

TL;DR
This paper explores collider-based detection prospects for supersymmetric DFSZ axion models, focusing on axino phenomenology and displaced neutralino decays, with simulations indicating LHC sensitivity for certain parameter ranges.
Contribution
It presents a novel collider sensitivity analysis for supersymmetric DFSZ axion models, highlighting the potential to probe axion decay constants below 10^{11} GeV at the LHC.
Findings
LHC can effectively probe axion decay constants below 10^{11} GeV for higgsino masses under 1 TeV.
Displaced neutralino decays into axinos are detectable with current collider simulations.
Supersymmetric axion models can be studied alongside existing collider and astrophysical searches.
Abstract
We discuss a phenomenological model that extends the minimal supersymmetric standard model to contain axions and their supersymmetric partner, the axino. In the supersymmetric DFSZ axion model, the axino has tree level couplings to the higgs sector. In the case where -parity is conserved, collider experiments may be sensitive to displaced decays of heavier neutralino states into lighter, mostly axino states. We present a sensitivity analysis using a model in which mostly higgsino next-to-lightest supersymmetric particle states decay into a mostly axino lightest supersymmetric particle. The model is studied using Monte Carlo simulation produced using and estimates of experimental sensitivities to the model, including detector simulation and kinematic selections, are evaluated using the framework. For a higgsino mass below 1 TeV, the axion…
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