Sort by
Refine Your Search
-
Country
-
Employer
- University of Texas at Arlington
- University of Oxford
- Delft University of Technology (TU Delft)
- EPFL
- Eindhoven University of Technology (TU/e)
- Forschungszentrum Jülich
- King Abdullah University of Science and Technology
- Pennsylvania State University
- Argonne
- CNRS
- Heriot Watt University
- National Aeronautics and Space Administration (NASA)
- Oak Ridge National Laboratory
- University of Central Florida
- University of Delaware
- University of Lund
- University of Twente
- ARCNL
- Biophysical and Biomedical Measurement Group, National Institute of Standards and Technology
- Boise State University
- Carnegie Mellon University
- Chalmers University of Technology
- Empa
- Helmholtz-Zentrum Berlin für Materialien und Energie
- ICMAB
- IMEC
- KAUST
- Karlstad University
- Linköping University
- National Energy Technology Laboratory (NETL)
- Purdue University
- RIKEN
- SUNY University at Buffalo
- Singapore-MIT Alliance for Research and Technology
- The Extreme Light Infrastructure ERIC
- The Ohio State University
- The University of Queensland
- The University of South Dakota
- UNIVERSITY OF VIENNA
- Umeå University
- University of Cambridge;
- University of Jyväskylä
- University of Liverpool
- University of Minnesota
- University of North Carolina at Chapel Hill
- University of North Carolina at Charlotte
- University of Twente (UT)
- University of Vienna
- Università degli Studi di Trieste
- 39 more »
- « less
-
Field
-
. Our university is located in Brainport Eindhoven — a world‑leading tech region with more than 7,000 high‑tech companies and strong R&D activity. Known for breakthroughs in AI, photonics, semiconductors
-
of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm
-
Neuromorphic computing is emerging as a key technology for future energy-efficient artificial intelligence. At Peter Grünberg Institute- Semiconductor Nanoelectronics (PGI-9) , we develop innovative
-
Project Overview Wafer-Scale Integrated Sensing Devices based on Optoelectronic Metasurfaces (WISDOM) focuses on semiconductor wafer growth and processing for photonic applications. This program
-
of the shuttled electron [Nat. Commun. 15, 1325 (2024) ] which makes this approach very promising for scaling up semiconductor spin qubit devices [Nature 653, 360 (2026) ]. This position focuses on experimentally
-
Are you interested about sustainable semiconductor manufacturing? Join TU/e to pioneer circular manufacturing concepts for the next generation of photonic chips, working at the forefront
-
spectroscopy and the characterization of defects in semiconductor materials. Demonstrates expertise in investigating the optical and electronic properties of semiconductors to support the development of next
-
, potentially up to 47%, by using triple-junction nanowire cells using III-V semiconductor materials. To this end, this interdisciplinary project will also optimize the surface passivation of nanowires to improve
-
National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 3 hours ago
strong expertise in semiconductor device physics, hands-on experience with advanced detector testbeds, and a demonstrated ability to interpret device behavior and translate insights into optimized detector
-
(ARCNL) focuses on the fundamental physics and chemistry involved in current and future key technologies in nanolithography, primarily for the semiconductor industry. ARCNL is a public-private partnership