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    <citation>
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        <titl xml:lang="sv">Attosekund-elektronspinndynamik i Xe 4d-fotojonisering</titl>
        <parTitl xml:lang="en">Attosecond electron–spin dynamics in Xe 4d photoionization</parTitl>
        <IDNo agency="SND">2020-64-1-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.5878/rhak-nd96</IDNo>
      </titlStmt>
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        <producer xml:lang="en" abbr="SND">Swedish National Data Service</producer>
        <producer xml:lang="sv" abbr="SND">Svensk nationell datatjänst</producer>
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      <holdings URI="https://doi.org/10.5878/rhak-nd96">Landing page</holdings>
    </citation>
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  <stdyDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">Attosekund-elektronspinndynamik i Xe 4d-fotojonisering</titl>
        <parTitl xml:lang="en">Attosecond electron–spin dynamics in Xe 4d photoionization</parTitl>
        <IDNo agency="SND">2020-64-1-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.5878/rhak-nd96</IDNo>
        <IDNo agency="DOI">10.1038/s41467-020-18847-1</IDNo>
      </titlStmt>
      <rspStmt>
        <AuthEnty xml:lang="en" affiliation="Department of Physics, Lund University">Zhong, Shiyang</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Fysiska institutionen, Lunds universitet">Zhong, Shiyang</AuthEnty>
      </rspStmt>
      <prodStmt>
        <grantNo xml:lang="en" agency="Swedish Research Council">2013-08185</grantNo>
        <grantNo xml:lang="sv" agency="Vetenskapsrådet">2013-08185</grantNo>
        <grantNo xml:lang="en" agency="European Research Council">339253</grantNo>
        <grantNo xml:lang="sv" agency="Europeiska forskningsrådet">339253</grantNo>
        <grantNo xml:lang="en" agency="Knut and Alice Wallenberg Foundation">2017.0104</grantNo>
        <grantNo xml:lang="sv" agency="Knut och Alice Wallenbergs Stiftelse">2017.0104</grantNo>
      </prodStmt>
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        <distrbtr xml:lang="en" abbr="SND" URI="https://snd.se">Swedish National Data Service</distrbtr>
        <distrbtr xml:lang="sv" abbr="SND" URI="https://snd.se">Svensk nationell datatjänst</distrbtr>
        <distDate xml:lang="en" date="2020-10-07" />
      </distStmt>
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        <version elementVersion="1" elementVersionDate="2020-10-07" />
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      <holdings URI="https://doi.org/10.5878/rhak-nd96">Landing page</holdings>
    </citation>
    <stdyInfo>
      <subject>
        <keyword xml:lang="en" vocab="MeSH" vocabURI="http://id.nlm.nih.gov/mesh/D007368">Interferometry</keyword>
        <keyword xml:lang="sv" vocab="MeSH" vocabURI="http://id.nlm.nih.gov/mesh/D007368">Interferometri</keyword>
      </subject>
      <abstract xml:lang="en" contentType="abstract">We study photoionization time delays in Xe in the 70-100 eV range by combining attosecond interferometry with coincidence spectroscopy.  Supported by calculations using the relativistic random phase approximation,  we identify two interfering ionization processes:  the giant dipole resonance due to collective effects in 4d to continuum f excitation with a fast decay time of a few tens of attoseconds and a narrow resonance at threshold induced by spin-flip transitions, with much longer decay time of several hundreds attoseconds. Our results provide new insight into the complex electron-spin dynamics of photo-induced phenomena.

The dataset includes the recorded electron time of flight  (seqxx.csv) and electron kinetic energy (seqxxe.csv) for each laser shot. Scan01, 03, 04, 06, 07 is RABBIT scan in Xenon and Scan 02, 05 is RABBIT scan in Neon.</abstract>
      <abstract xml:lang="sv" contentType="abstract">Vi studerar tidsfördröjningar i fotojonisation av Xe i 70-100 eV-område genom att kombinera attosekundinterferometri med koincidensspektroskopi. Med hjälp av beräkningar som använder den relativistiska random phase-approximationen, identifierar vi två interfererande jonisationsprocesser: ”giant dipole”-resonansen på grund av kollektiva effekter i 4d till kontinuum f-excitation med en snabb sönderfallstid på några tiotals attosekunder och en smal resonans vid tröskel inducerad av spin-flip-övergångar, med mycket längre sönderfallstid på flera hundra attosekunder. Våra resultat ger ny inblick i den komplexa elektronspinndynamiken i fotoinducerade fenomen.

Datasetet innehåller data om 'recorded electron time of flight' (seqxx.csv) och om 'electron kinetic energy' (seqxxe.csv). Mer information finns i dokumentationsfilen.</abstract>
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    <dataAccs>
      <useStmt>
        <restrctn xml:lang="en">Access to data through SND. Data are freely accessible.</restrctn>
        <restrctn xml:lang="sv">Åtkomst till data via SND. Data är fritt tillgängliga.</restrctn>
        <conditions elementVersion="info:eu-repo-Access-Terms vocabulary">openAccess</conditions>
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    </dataAccs>
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      <relPubl>
        <citation>
          <titlStmt>
            <titl xml:lang="sv">Zhong, S., Vinbladh, J., Busto, D., Squibb, R. J., Isinger, M., Neoričić, L., Laurell, H., Weissenbilder, R., Arnold, C. L., Feifel, R., Dahlström, J. M., Wendin, G., Gisselbrecht, M., Lindroth, E., &amp; L’Huillier, A. (2020). Attosecond electron–spin dynamics in Xe 4d photoionization. In Nature Communications (No. 5042; Vol. 11, Issue 1).</titl>
            <parTitl xml:lang="en">Zhong, S., Vinbladh, J., Busto, D., Squibb, R. J., Isinger, M., Neoričić, L., Laurell, H., Weissenbilder, R., Arnold, C. L., Feifel, R., Dahlström, J. M., Wendin, G., Gisselbrecht, M., Lindroth, E., &amp; L’Huillier, A. (2020). Attosecond electron–spin dynamics in Xe 4d photoionization. In Nature Communications (No. 5042; Vol. 11, Issue 1).</parTitl>
            <IDNo agency="DOI">10.1038/s41467-020-18847-1</IDNo>
          </titlStmt>
          <distStmt>
            <distDate date="2020">2020</distDate>
          </distStmt>
        </citation>
      </relPubl>
    </othrStdyMat>
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