EPFL, the Swiss Federal Institute of Technology in Lausanne, is one of the most dynamic university campuses in Europe and ranks among the top 20 universities worldwide. The EPFL employs more than 6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries.
Postdoctoral Position in Plasmonic Crystals for Solar Energy
Mission
We are seeking a post-doctoral candidate with experience in numerical modelling, preparation and experimental characterization of nanostructured materials to join our SNSF project “Coupled oscillations in plasmonic crystals”.
In this project, we focus on the effects of coupling of plasmonic oscillations in metallic micro-/nanostructures. It might be possible to achieve plasmonic crystals featuring broad frequency bands of extraordinary optical transmission (EOT) in the UV-VIS-NIR spectral range. The insights from this project will have considerable impact on the fields of photovoltaics, flat screens and flexible displays, as well as energy efficient OLED lighting, electrochromic devices and energy-efficient insulating glazing.
In our research group, we develop novel micro- and nanostructured smart materials for active and passive solar energy applications being integrated into the building envelope. We focus on thin films, because these allow covering a large surface area with a small quantity of raw material - and we focus on their electronic and optical properties, because these closely interrelated properties are most important for the use of solar energy.
As a postdoctoral researcher, you will be expected to:
- Assume full responsibility for your original research;
- Perform research in close collaboration with other lab members and international collaborators;
- Design and execute experiments;
- Analyze and interpret experimental results;
- Write scientific articles for publication in peer-reviewed journals;
- Present at international conferences;
- Coach Master students, advice PhD students and provide basic administrative support;
- Provide support in teaching activities.
Profile
- A PhD degree in Micro-/Nanotechnology, Physics, Optics, Materials Science, Energy, or a related quantitative field
- A strong background in several of the following fields: reactive magnetron sputtering, electron-beam lithography, theory of light-matter interaction, computer simulations using the method of Finite Differences in the Time Domain (FDTD), determination of optical material constants by multiangle UV-VIS-NIR ellipsometry, UV-VIS-NIR spectrophotometry, ultra-high vacuum scanning tunneling microscopy (STM), and/or photoelectron spectroscopies (XPS, UPS)
- A sincere interest in micro-/nanostructures, electronic and optical material properties, plasmonics and solar energy
- Proficiency in English (French is a plus)
- Strong motivation for academic research, critical thinking, independence, good self-management skills, and excellent team spirit
- Interest in a career involving research and teaching is an asse
We offer
- Term of employment: One-year contract, renewal subject to organizational needs and availability
- Competitive remuneration
- An international research environment
- An inspiring and stimulating environment within our research group
- EPFL is an international and world-class engineering institution that hosts state-of-the-art experimental facilities and a rich and vibrant scientific and entrepreneurial community Information
Expected start date : May 1st, 2027. An alternative start date may exceptionally be agreed upon by mutual agreement.
Only shortlisted candidates will be contacted.
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Postdoctoral Position in Plasmonic Crystals for Solar Energy in Lausanne Arbeitgeber: École polytechnique fédérale de Lausanne, EPFL
Das Labor des Schweizerischen Instituts für experimentelle Krebsforschung am AGORA Cancer Research Center in Lausanne bietet eine dynamische und unterstützende Arbeitsumgebung, die auf Zusammenarbeit und Innovation ausgerichtet ist. Mitarbeiter profitieren von umfangreichen Weiterbildungsmöglichkeiten und einem starken Fokus auf persönliche und berufliche Entwicklung, während sie an bedeutenden Projekten im Bereich der Tumorimmunologie und Krebsforschung mitwirken. Die Lage in Lausanne ermöglicht zudem eine hohe Lebensqualität und Zugang zu einer lebendigen wissenschaftlichen Gemeinschaft.
Kontaktdaten:
École polytechnique fédérale de Lausanne, EPFL Recruiting-Team