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KOTO vs. NA62 dark scalar searches

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TLDR
In this article, the authors consider two qualitatively different physics cases: axion-like-particles (ALP) which couple to gluons or electroweak gauge bosons, and a model based on an approximate strange flavor symmetry that leads to a strong violation of the Grossman-Nir bound.
Abstract
The two kaon factories, KOTO and NA62, are at the cutting edge of the intensity frontier, with an unprecedented numbers of long lived and charged Kaons, ∼ 1013, being measured and analyzed. These experiments have currently a unique opportunity to search for dark sectors. In this paper, we demonstrate that searches done at KOTO and NA62 are complementary, both probing uncharted territories. We consider two qualitatively different physics cases. In the first, we analyze models of axion-like-particles (ALP) which couple to gluons or electroweak gauge bosons. In the second, we introduce a model based on an approximate strange flavor symmetry that leads to a strong violation of the Grossman-Nir bound. For the first scenario, we design a new search strategy for the KOTO experiment, KL → π0a → 4γ. Its expected sensitivity on the branching ratio is at the level of 10−9. This demonstrates the great potential of KOTO as a discovery machine. In addition, we revisit other bounds on ALPs from Kaon factories, highlighting the main sources of theoretical uncertainty, and collider experiments, and show new projections. For the second scenario, we show that the model may be compatible with the preliminary analysis of the KOTO-data that shows a hint for New Physics.

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Feebly-interacting particles: FIPs 2020 workshop report

P. Agrawal, +51 more
TL;DR: FIPs 2020 as mentioned in this paper was the first workshop dedicated to the physics of feebly-interacting particles and was held virtually from 31 August to 4 September 2020 at CERN, where experts from collider, beam dump, fixed target experiments, as well as from astrophysics, axions/ALPs searches, current/future neutrino experiments, and dark matter direct detection communities participated.
Journal ArticleDOI

The Forward Physics Facility at the High-Luminosity LHC

Jonathan L. Feng, +235 more
- 09 Mar 2022 - 
TL;DR: The Forward Physics Facility (FPF) as mentioned in this paper is a suite of experiments to probe standard model processes and search for physics beyond the standard model (BSM) beyond the acceptance of existing LHC experiments.
Journal ArticleDOI

Explaining ( g − 2 ) μ , e , the KOTO anomaly, and the MiniBooNE excess in an extended Higgs model with sterile neutrinos

TL;DR: In this article, a simple extension of the Standard Model (SM) by a complex scalar doublet and a singlet along with three sterile neutrinos is considered, which can explain anomalous magnetic moments of both muon and electron, KOTO anomalous events and the MiniBooNE excess simultaneously.
Journal ArticleDOI

Heavy axion opportunities at the DUNE near detector

TL;DR: The Deep Underground Neutrino Experiment near detector has a unique sensitivity to heavy axions for masses between 20 MeV and 2 GeV, complementary to other future experiments as discussed by the authors.
Journal ArticleDOI

New physics searches at kaon and hyperon factories

TL;DR: In this article , the authors summarize the relevant phenomenological models and the status of the searches in a comprehensive list of kaon and hyperon decay channels and identify new search strategies for under-explored signatures, and demonstrate that improved sensitivities from current and next-generation experiments could lead to a qualitative leap in the exploration of light dark sectors.
References
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Journal ArticleDOI

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Journal ArticleDOI

Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC

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Journal ArticleDOI

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TL;DR: In this paper, results from searches for the standard model Higgs boson in proton-proton collisions at 7 and 8 TeV in the CMS experiment at the LHC, using data samples corresponding to integrated luminosities of up to 5.8 standard deviations.
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TL;DR: The complete review as discussed by the authors is published online on the website of the Particle Data Group (http://pdg.lbl.gov) and in a journal. Volume 1 is available in print as thePDG Book.
Journal ArticleDOI

CP Conservation in the Presence of Pseudoparticles

TL;DR: In this paper, the authors give an explanation of the conservation of strong interactions which includes the effects of pseudoparticles, and they find it is a natural result for any theory where at least one flavor of fermion acquires its mass through a Yukawa coupling to a scalar field which has nonvanishing vacuum expectation value.
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