Article ID Journal Published Year Pages File Type
1836713 Nuclear Physics A 2013 9 Pages PDF
Abstract

The study of the K¯N system at very low energies plays a key role for the understanding of the strong interaction between hadrons in the strangeness sector. At the DAΦNE electron–positron collider of Laboratori Nazionali di Frascati we studied kaonic atoms with Z=1Z=1 and Z=2Z=2, taking advantage of the low-energy charged kaons from Φ  -mesons decaying nearly at rest. The SIDDHARTA experiment used X-ray spectroscopy of the kaonic atoms to determine the transition yields and the strong interaction induced shift and width of the lowest experimentally accessible level (1s for H and D and 2p for He). Shift and width are connected to the real and imaginary part of the scattering length. To disentangle the isospin dependent scattering lengths of the antikaon–nucleon interaction, measurements of K−pK−p and of K−dK−d are needed. We report here on an exploratory deuterium measurement, from which a limit for the yield of the K-series transitions was derived: Y(Ktot)<0.0143Y(Ktot)<0.0143 and Y(Kα)<0.0039Y(Kα)<0.0039 (CL 90%). Also, the upcoming SIDDHARTA-2 kaonic deuterium experiment is introduced.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Nuclear and High Energy Physics
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