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Measurements of Σ And σ time-like electromagnetic form factors for center-of-mass energies from 2.3864 to 3.0200 GeV

CERN İşbirliği


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  <identifier identifierType="URL">https://aperta.ulakbim.gov.tr/record/240548</identifier>
  <creators>
    <creator>
      <creatorName>CERN İşbirliği</creatorName>
      <affiliation>CERN</affiliation>
    </creator>
  </creators>
  <titles>
    <title>Measurements Of Σ And Σ Time-Like Electromagnetic Form Factors For Center-Of-Mass Energies From 2.3864 To 3.0200 Gev</title>
  </titles>
  <publisher>Aperta</publisher>
  <publicationYear>2021</publicationYear>
  <dates>
    <date dateType="Issued">2021-01-01</date>
  </dates>
  <resourceType resourceTypeGeneral="Text">Journal article</resourceType>
  <alternateIdentifiers>
    <alternateIdentifier alternateIdentifierType="url">https://aperta.ulakbim.gov.tr/record/240548</alternateIdentifier>
  </alternateIdentifiers>
  <relatedIdentifiers>
    <relatedIdentifier relatedIdentifierType="DOI" relationType="IsIdenticalTo">10.1016/j.physletb.2021.136110</relatedIdentifier>
  </relatedIdentifiers>
  <rightsList>
    <rights rightsURI="http://www.opendefinition.org/licenses/cc-by">Creative Commons Attribution</rights>
    <rights rightsURI="info:eu-repo/semantics/openAccess">Open Access</rights>
  </rightsList>
  <descriptions>
    <description descriptionType="Abstract">&lt;p&gt;The Born cross sections of the ${e}^{+}{e}^{-}\to {\Sigma }^{+}{\overline{\Sigma }}^{-}$ and ${e}^{+}{e}^{-}\to {\Sigma }^{-}{\overline{\Sigma }}^{+}$ processes are determined for center-of-mass energy from 2.3864 to 3.0200 GeV with the BESIII detector. The cross section lineshapes can be described properly by a pQCD function and the resulting ratio of effective form factors for the ${\Sigma }^{+}$ and ${\Sigma }^{-}$ is consistent with 3. In addition, ratios of the ${\Sigma }^{+}$ electric and magnetic form factors, $|{G}_{E}/{G}_{M}|$, are obtained at three center-of-mass energies through an analysis of the angular distributions. These measurements, which are studied for the first time in the off-resonance region, provide precision experimental input for understanding baryonic structure. The observed new features of the ${\Sigma }^{±}$ form factors require more theoretical discussions for the hyperons.&lt;/p&gt;</description>
  </descriptions>
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