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          <full_title>Journal of Geophysical Research: Space Physics</full_title>
          <abbrev_title>JGR Space Physics</abbrev_title>
          <issn media_type="print">2169-9380</issn>
          <issn media_type="electronic">2169-9402</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>08</month>
            <year>2014</year>
          </publication_date>
          <journal_volume>
            <volume>119</volume>
          </journal_volume>
          <issue>8</issue>
          <doi_data>
            <doi>10.1002/jgra.v119.8</doi>
            <resource>https://agupubs.onlinelibrary.wiley.com/toc/21699402/119/8</resource>
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        <journal_article publication_type="full_text">
          <titles>
            <title>Random dust charge fluctuations in the near‐Enceladus plasma</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>V. V.</given_name>
              <surname>Yaroshenko</surname>
              <affiliation>Deutsches GeoForschungsZentrum  Potsdam Germany</affiliation>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>H.</given_name>
              <surname>Lühr</surname>
              <affiliation>Deutsches GeoForschungsZentrum  Potsdam Germany</affiliation>
            </person_name>
          </contributors>
          <abstract abstract-type="main">
            <title>Abstract</title>
            <p>Stochastic dust charge fluctuations have been studied in the light of Cassini data on the near‐Enceladus plasma environment. Estimates of fluctuation time scales showed that this process can be of importance for the grains emanating from the icy moon. The analytical modeling predicts that in the dust‐loaded Enceladus plasma a majority of the grains acquires fluctuating negative charges, but there might appear a minority of positively charged particles. The probability of this effect mostly depends on the ratio of the dust/plasma number densities. Our findings appear to be supported by the available Cassini Plasma Spectrometer measurements of the charged grain distributions during E3 and E5 plume flybys. The theoretical results can also provide new insights into the intricate process of particle dynamics in the inner magnetosphere.</p>
          </abstract>
          <abstract abstract-type="short">
            <title>Key Points</title>
            <p>
              <list list-type="bullet">
                <list-item>
                  <p>Stochastic dust charge fluctuations are studied in the light of Cassini data</p>
                </list-item>
                <list-item>
                  <p>Modeling predicts coexistence of negative/positive fluctuating dust charges</p>
                </list-item>
                <list-item>
                  <p>Results might explain the available CAPS measurements</p>
                </list-item>
              </list>
            </p>
          </abstract>
          <publication_date media_type="online">
            <month>08</month>
            <day>04</day>
            <year>2014</year>
          </publication_date>
          <publication_date media_type="print">
            <month>08</month>
            <year>2014</year>
          </publication_date>
          <pages>
            <first_page>6190</first_page>
            <last_page>6198</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="doi">10.1002/2014JA020008</identifier>
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