New Probes for Axion-like Particles at Hadron Colliders
arXiv:1901.03061 · doi:10.1103/PhysRevD.100.015016
Abstract
Axion-like particles (ALPs) appear from spontaneous global symmetry breaking in many extensions of the Standard Model (SM). In this paper, we find bounds on ALP () model parameters at the LHC from the ALP production associated with a photon and a jet () as well as single top and top quark pairs (, ) in a model independent approach. In particular, it is shown that the ALP production associated with a photon plus a jet at the LHC is a promising channel with significant sensitivity to probe the ALP couplings to gluons and electroweak gauge bosons. The prospects are presented at the High Luminosity LHC including a realistic detector simulation and pile up effects. Furthermore, the ALP model is examined through its contributions to the top quark (chromo)magnetic dipole moments. It is shown that the top quark magnetic and chromomagnetic dipole moments enable us to probe the ALP couplings to top quark and gauge bosons at a time. The constraints are complementary to those obtained from direct searches, as they are sensitive to light ALPs.
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References in corpus (11)
- PYTHIA 6.4 Physics and Manual
- Collider Probes of Axion-Like Particles
- A taste of dark matter: Flavour constraints on pseudoscalar mediators
- A New Flavor of Searches for Axion-Like Particles
- Contributions of axion-like particles to lepton dipole moments
- Stop the Top Background of the Stop Search
- Search for dark matter produced in association with bottom or top quarks in = 13 TeV pp collisions with the ATLAS detector
- Exploring the Anomalous Higgs-top Couplings
- Pinning down top dipole moments with ultra-boosted tops
- Search for dark matter produced in association with heavy-flavor quarks in proton-proton collisions at sqrt(s) = 13 TeV
- Top Quark Forward-Backward Asymmetry and -Boson with General Couplings