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        <datestamp>2025-12-05T21:37:09Z</datestamp>
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              <identifier identifierType="DOI">10.48436/na9w7-5z987</identifier>
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                  <creatorName nameType="Personal">Kosina, Hans</creatorName>
                  <givenName>Hans</givenName>
                  <familyName>Kosina</familyName>
                  <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1616-4942</nameIdentifier>
                  <affiliation affiliationIdentifier="https://ror.org/04d836q62" affiliationIdentifierScheme="ROR">TU Wien</affiliation>
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                <creator>
                  <creatorName nameType="Personal">Gull, Josef</creatorName>
                  <givenName>Josef</givenName>
                  <familyName>Gull</familyName>
                  <nameIdentifier nameIdentifierScheme="ORCID">0000-0002-8560-7279</nameIdentifier>
                  <affiliation affiliationIdentifier="https://ror.org/04d836q62" affiliationIdentifierScheme="ROR">TU Wien</affiliation>
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              <titles>
                <title>Wigner Transport Dynamics of Spatial Electron Entanglement (FWF Project P 37080-N)</title>
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              <publisher>TU Wien</publisher>
              <publicationYear>2025</publicationYear>
              <subjects>
                <subject subjectScheme="FOS">Electrical engineering, electronic engineering, information engineering</subject>
                <subject subjectScheme="FOS">Mathematics</subject>
                <subject subjectScheme="FOS">Nano technology</subject>
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              <dates>
                <date dateType="Issued">2025-11-25</date>
                <date dateType="Updated">2025-12-05</date>
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              <language>eng</language>
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                <description descriptionType="Abstract">Wigner Transport Dynamics of Spatial Electron Entanglement

This dataset was produced at the Institute for Microelectronics, TU Wien, with funding from the Austrian Science Fund FWF. It contains the research data and meta data used to generate the figures in the linked journal article.

Context and methodology



The dataset was created in the course of FWF project P37080-N.

The dataset contains supplementary data to the publication listed below.

Data are the result of numerical simulations based on the Wigner equation.


Technical details



A README file contains information about the actual publication and how to interpret the data.

The data is given in human-readable CSV format.</description>
                <description descriptionType="Abstract" xml:lang="eng">A novel two-particle Monte Carlo (MC) transport model has been developed and applied to determine the energy distribution function (EDF) in a MOSFET. A dedicated statistical enhancement algorithm enhances the number of samples at higher energies. A comparison with the well-established one-particle MC method and a related enhancement method is presented.</description>
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                  <funderName>FWF Austrian Science Fund</funderName>
                  <funderIdentifier funderIdentifierType="ROR">013tf3c58</funderIdentifier>
                  <awardNumber>P37080-N</awardNumber>
                  <awardTitle>Wigner Transport Dynamics of Spatial Electron Entanglement</awardTitle>
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