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Träfflista för sökning "WFRF:(Farzan Yasaman) srt2:(2020-2022)"

Search: WFRF:(Farzan Yasaman) > (2020-2022)

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1.
  • Abraham, Roshan Mammen, et al. (author)
  • Tau neutrinos in the next decade : from GeV to EeV
  • 2022
  • In: Journal of Physics G. - : Institute of Physics Publishing (IOPP). - 0954-3899 .- 1361-6471. ; 49:11
  • Journal article (peer-reviewed)abstract
    • Tau neutrinos are the least studied particle in the standard model. This whitepaper discusses the current and expected upcoming status of tau neutrino physics with attention to the broad experimental and theoretical landscape spanning long-baseline, beam-dump, collider, and astrophysical experiments. This whitepaper was prepared as a part of the NuTau2021 Workshop.
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2.
  • Ackermann, Markus, et al. (author)
  • High-energy and ultra-high-energy neutrinos : A Snowmass white paper
  • 2022
  • In: Journal of High Energy Astrophysics. - : Elsevier. - 2214-4048 .- 2214-4056. ; 36, s. 55-110
  • Journal article (peer-reviewed)abstract
    • Astrophysical neutrinos are excellent probes of astroparticle physics and high-energy physics. With energies far beyond solar, supernovae, atmospheric, and accelerator neutrinos, high-energy and ultrahigh-energy neutrinos probe fundamental physics from the TeV scale to the EeV scale and beyond. They are sensitive to physics both within and beyond the Standard Model through their production mechanisms and in their propagation over cosmological distances. They carry unique information about their extreme non-thermal sources by giving insight into regions that are opaque to electromagnetic radiation. This white paper describes the opportunities astrophysical neutrino observations offer for astrophysics and high-energy physics, today and in coming years.
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3.
  • Anchordoqui, Luis A., et al. (author)
  • The Forward Physics Facility : Sites, experiments, and physics potential
  • 2022
  • In: Physics reports. - : Elsevier. - 0370-1573 .- 1873-6270. ; 968, s. 1-50
  • Journal article (peer-reviewed)abstract
    • The Forward Physics Facility (FPF) is a proposal to create a cavern with the space and infrastructure to support a suite of far-forward experiments at the Large Hadron Collider during the High Luminosity era. Located along the beam collision axis and shielded from the interaction point by at least 100 m of concrete and rock, the FPF will house experiments that will detect particles outside the acceptance of the existing large LHC experiments and will observe rare and exotic processes in an extremely low-background environment. In this work, we summarize the current status of plans for the FPF, including recent progress in civil engineering in identifying promising sites for the FPF and the experiments currently envisioned to realize the FPF's physics potential. We then review the many Standard Model and new physics topics that will be advanced by the FPF, including searches for long-lived particles, probes of dark matter and dark sectors, high-statistics studies of TeV neutrinos of all three flavors, aspects of perturbative and non-perturbative QCD, and high-energy astroparticle physics.
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  • Result 1-3 of 3

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