Applications of quantum imaging

Annotation

Quantum imaging and sensing leverage quantum principles, such as indistinguishability and entanglement, to surpass classical limits of sensitivity and precision. Entangled photons from the visible to x-rays, featuring robust spectro-temporal correlations, facilitate high-precision, resource-efficient measurements, beneficial for low-exposure imaging of delicate samples as an example. In our CAPADS group we developed a platform to exploit these quantum correlations (in time, energy, momentum etc.) for optimal discrimination of signal photons from background noise and to apply the methodology to several high profile applications in spectroscopy, metrology and telescopy. We are looking for motivated candidates to work closely with both theorists and experimentalists to develop measurement strategies, instrumentation and data analysis methods.