English

Strangeness Photoproduction at the BGO-OD experiment

Nuclear Experiment 2020-07-20 v1

Abstract

The BGO-OD experiment at the ELSA accelerator facility uses an energy tagged bremsstrahlung photon beam to investigate the excitation structure of the nucleon. The setup consists of a highly segmented BGO calorimeter surrounding the target, with a particle tracking magnetic spectrometer at forward angles. BGO-OD is ideal for investigating low momentum transfer processes due to the acceptance and high momentum resolution at forward angles. In particular, this enables the investigation of strangeness photoproduction where t-channel exchange mechanisms play an important role. This also allows access to low momentum exchange kinematics where extended, molecular structure may manifest in reaction mechanisms. First key results at low tt indicate a cusp-like structure in K+Σ0K^+\Sigma^0 photoproduction at W=1900W = 1900\,MeV, line shapes and differential cross sections for K+ΛK^+\Lambda(1405)K+Σ0π0\rightarrow K^+\Sigma^0\pi^0, and a peak structure in KS0Σ0K^0_S\Sigma^0 photoproduction. The peak in the KS0Σ0K^0_S\Sigma^0 channel appears consistent with meson-baryon generated states, where equivalent models have been used to describe the PCP_C pentaquark candidates in the heavy charmed quark sector.

Keywords

Cite

@article{arxiv.2007.08896,
  title  = {Strangeness Photoproduction at the BGO-OD experiment},
  author = {T. C. Jude and S. Alef and P. Bauer and R. Beck and A. Braghieri and P. L. Cole and R. Di Salvo and D. Elsner and A. Fantini and O. Freyermuth and F. Ghio and A. Gridnev and D. Hammann and J. Hannappel and K. Kohl and N. Kozlenko and A. Lapik and P. Levi Sandri and V. Lisin and G. Mandaglio and R. Messi and D. Moricciani and V. Nedorezov and D. Novinsky and P. Pedroni and A. Polonski and B. -E. Reitz and M. Romaniuk and G. Scheluchin and H. Schmieden and V. Sumachev and V. Tarakanov and C. Tillmanns},
  journal= {arXiv preprint arXiv:2007.08896},
  year   = {2020}
}

Comments

Proceedings of The 12th International Workshop on the Physics of Excited Nucleons (NSTAR 2019)

R2 v1 2026-06-23T17:11:36.221Z