We are seeking a Postdoctoral Research Associate to use advanced scanning probe microscopy for the development and application of multiscale excitonic probes. In this role, you will study buried interfaces, defects, and charge-transfer processes in vertically integrated semiconductor structures. The research will focus on low-dimensional and emerging materials incorporated into complex microelectronic and optoelectronic architectures, with particular emphasis on interfaces between two-dimensional and conventional semiconductor materials. This position resides in the Functional Atomic Force Microscopy (FAFM) group in the Nanomaterials Characterization Section, Center for Nanophase Materials Sciences (CNMS), Physical Science Directorate (PSD) at Oak Ridge National Laboratory (ORNL) and you will join our team as part of the Department of Energy’s Nanoscale Science Research Center MEERCAT project. As part of our research team, you will investigate excitonic and electronic behavior across multiple length and time scales using a combination of photoinduced force microscopy (PiFM), photoluminescence, and electroluminescence spectroscopy. These measurements will be correlated with complementary techniques such as Kelvin probe force microscopy, scanning microwave impedance microscopy, cathodoluminescence, Raman spectroscopy, and electron microscopy to connect local chemical, structural, optical, and electronic properties. The research will contribute to the development of multiscale characterization strategies for understanding interfaces and defects that affect the performance of next-generation semiconductor devices. The candidate will collaborate with researchers across CNMS, ORNL, and the broader NSRC network working in materials synthesis, device fabrication, theoretical modeling, and complementary characterization. We are particularly interested in candidates with backgrounds in optical spectroscopy, scanning probe microscopy, semiconductor materials, or condensed matter physics who are motivated to work across disciplinary boundaries and develop new experimental capabilities.
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Job Type
Full-time
Career Level
Entry Level
Education Level
Ph.D. or professional degree