Dibaryons – a new state of matter?

New results in the field of dibaryons are discussed concentrating on the d∗(2380) resonance with I(JP) = 0(3+), which has been observed first in the double-pionic fusion to deuterium and meanwhile also in neutron-proton scattering — establishing it thus as a genuine s-channel resonance. Double-pioni...

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Main Authors: Bashkanov M., Clement H., Perez del Rio E., Skorodko T.
Format: Article
Language:English
Published: EDP Sciences 2014-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20148102002
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author Bashkanov M.
Clement H.
Perez del Rio E.
Skorodko T.
author_facet Bashkanov M.
Clement H.
Perez del Rio E.
Skorodko T.
author_sort Bashkanov M.
collection DOAJ
description New results in the field of dibaryons are discussed concentrating on the d∗(2380) resonance with I(JP) = 0(3+), which has been observed first in the double-pionic fusion to deuterium and meanwhile also in neutron-proton scattering — establishing it thus as a genuine s-channel resonance. Double-pionic fusion reactions to the He isotopes demonstrate that this resonance survives also in a nuclear surrounding. It also has been shown to contribute to dilepton production helping thus to resolve the so-called DLS puzzle. Moreover, the existence of dibaryons has also an impact on the equation of state for nuclear matter.
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spelling doaj.art-cfa4be8d024442eb87326fb8b83978542022-12-22T04:07:24ZengEDP SciencesEPJ Web of Conferences2100-014X2014-01-01810200210.1051/epjconf/20148102002epjconf_meson2014_02002Dibaryons – a new state of matter?Bashkanov M.Clement H.Perez del Rio E.Skorodko T.New results in the field of dibaryons are discussed concentrating on the d∗(2380) resonance with I(JP) = 0(3+), which has been observed first in the double-pionic fusion to deuterium and meanwhile also in neutron-proton scattering — establishing it thus as a genuine s-channel resonance. Double-pionic fusion reactions to the He isotopes demonstrate that this resonance survives also in a nuclear surrounding. It also has been shown to contribute to dilepton production helping thus to resolve the so-called DLS puzzle. Moreover, the existence of dibaryons has also an impact on the equation of state for nuclear matter.http://dx.doi.org/10.1051/epjconf/20148102002
spellingShingle Bashkanov M.
Clement H.
Perez del Rio E.
Skorodko T.
Dibaryons – a new state of matter?
EPJ Web of Conferences
title Dibaryons – a new state of matter?
title_full Dibaryons – a new state of matter?
title_fullStr Dibaryons – a new state of matter?
title_full_unstemmed Dibaryons – a new state of matter?
title_short Dibaryons – a new state of matter?
title_sort dibaryons a new state of matter
url http://dx.doi.org/10.1051/epjconf/20148102002
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AT clementh dibaryonsanewstateofmatter
AT perezdelrioe dibaryonsanewstateofmatter
AT skorodkot dibaryonsanewstateofmatter