-
the specific challenges of designing and evaluating RF shutters incorporating agile materials, within a unique collaborative environment. The topology of the RF shutter, which resembles a large-area periodic
-
platform for the study of artificial quantum materials based on large semiconductor quantum dot lattices. By combining extended one-dimensional and bilinear arrays with high-sensitivity RF admittance
-
implantable devices, combining: - Wireless communication using a backscatter-modulation architecture - Co-design of front-end electronics and miniature RF antennas for chronic implantation - Prototyping and
-
optimize hardware neural networks made of approximately one hundred magnetic tunnel junctions, with radio-frequency inputs, in order to classify RF signals directly in the physical domain. Chains of magnetic
-
FieldTechnologyYears of Research ExperienceNone Additional Information Eligibility criteria • PhD in microwave engineering, RF/microwave circuit design and simulation, or radiofrequency material characterization
-
electronic instrumentation is essential. Desirable skills include: • Solid experience in electronic measurement systems and instrumentation. • Familiarity with RF/microwave techniques and fast signal