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  <doc>
    <id>63569</id>
    <completedYear/>
    <publishedYear>2025</publishedYear>
    <thesisYearAccepted/>
    <language>eng</language>
    <pageFirst/>
    <pageLast/>
    <pageNumber/>
    <edition/>
    <issue/>
    <volume/>
    <type>poster</type>
    <publisherName/>
    <publisherPlace/>
    <creatingCorporation/>
    <contributingCorporation/>
    <belongsToBibliography>0</belongsToBibliography>
    <completedDate>--</completedDate>
    <publishedDate>--</publishedDate>
    <thesisDateAccepted>--</thesisDateAccepted>
    <title language="eng">Towards monolithic integration of polymer-based electro-optical devices in silicon photonic integrated circuits using a 250 nm SOI technology</title>
    <abstract language="eng">Silicon-based photonic integrated circuits (PICs) in complementary metal oxide semiconductor (CMOS) technology are essential for next-generation communication systems and neuromorphic computing. However, silicon does not have efficient electro-optical (EO) effects. Since silicon limits the performance of current photonic devices, more advanced materials such as nonlinear optical polymers are needed to exploit the full potential of PICs. As a preliminary proof of concept, we demonstrate the quadratic EO effect and the electric field-induced EO effect using a Mach-Zehnder interferometer in conjunction with a co-integrated Ge photodiode. Our concept of monolithic integration could pave the way for next-generation PICs.</abstract>
    <identifier type="doi">10.1117/12.3056280</identifier>
    <identifier type="url">https://www.spiedigitallibrary.org/conference-proceedings-of-spie/13530/135300R/Towards-monolithic-integration-of-polymer-based-electro-optical-devices-in/10.1117/12.3056280.short</identifier>
    <enrichment key="eventName">SPIE Optics + Optoelectronics 2025</enrichment>
    <enrichment key="eventPlace">Prague, Czech Republic</enrichment>
    <enrichment key="eventStart">05.06.2025</enrichment>
    <enrichment key="opus.source">publish</enrichment>
    <author>Patrick Steglich</author>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>CMOS</value>
    </subject>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Silicon-based photonic integrated circuits</value>
    </subject>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Mach-Zehnder interferometer</value>
    </subject>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Ge-photodiode</value>
    </subject>
    <collection role="ddc" number="543">Analytische Chemie</collection>
    <collection role="institutes" number="">1 Analytische Chemie; Referenzmaterialien</collection>
    <collection role="institutes" number="">1.5 Proteinanalytik</collection>
    <collection role="themenfelder" number="">Chemie und Prozesstechnik</collection>
    <collection role="themenfelder" number="">Chemische Charakterisierung und Spurenanalytik</collection>
    <collection role="fulltextaccess" number="">Datei im Netzwerk der BAM verfügbar ("Closed Access")</collection>
    <collection role="literaturgattung" number="">Präsentation</collection>
  </doc>
</export-example>
