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the electronic, magnetic, and optical properties of 2D materials at ultrafast timescales, which holds promises for developing new energy technologies. The candidate is responsible for conceiving, planning, and
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Job Description We are searching for a talented and motivated PostDoc to develop the theory of quantum light sources for applications in optical quantum computers. The project takes place in
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: * Experience in synchrotron-based soft X-ray techniques, ultra-high vacuum instrumentation, X-ray optics, and/or X-ray detectors. * Experience in X-ray absorption (XAS) and scattering techniques, such as x-ray
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the development of next-generation integrated photonic chips for optical clocks, integrated light sources for quantum technology and advanced integrated microwave photonic chips for 6G telecommunications and beyond
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systems, induce instabilities and influence optical and thermal signatures. The nature of the metal/alloy used determines the combustion regime involved (gas-phase or surface heterogeneous), and therefore
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generative AI, such as Foundation Models, to the sPHENIX experiment with an eye towards future use at the EIC. The successful candidate could also take a significant role in existing research activities in
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or the vibrational transitions of a material, to the spatially confined electromagnetic field of an optical resonator. Most importantly, this occurs even in the dark because the coupling involves the zero-point
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The Max-Born Institute for Nonlinear Optics and Short Pulse Spectroscopy (MBI) conducts basic research in the field of nonlinear optics and ultrafast dynamics arising from the interaction of light
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molecular imaging research program. This platform will support translational studies mainly in oncology, through quantitative multimodal imaging (PET-CT, SPECT-CT, optical imaging, autoradiography
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. Structural biology using electron microscopy, such as cryogenic electron microscopy (cryo-EM) and tomography (cryo-ET). The postdoc will be central for helping to grow the new lab and will collaborate closely