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are recruiting a highly motivated postdoctoral researcher to lead the first implementation of Deep-UV Raman spectroscopy for real-time polymer identification. This project addresses a critical gap: no established
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spectroscopy (EIS), solid-state nuclear magnetic resonance (NMR), and X-ray/Neutron scattering techniques. We are particularly interested in candidates with prior experience in preferably all of the following
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technologies. Synthesis will be carried out mainly using mechanochemical methods, while characterization will involve a combination of electrochemical impedance spectroscopy (EIS), solid-state nuclear magnetic
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for nanolithography applications. Projects include ultra-high frequency photoacoustics for metrology, THz emission spectroscopy, understanding laser damage in semiconductor-industry-relevant materials, and, in
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equipped with various force methods, including a dual trap optical tweezers, scanning probe microscope, and acoustic force spectroscopy, as well as computing facility for molecular modeling, which enable
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building robust optical circuits incorporating new types of elements. These include gain media, active positioning elements such as piezos and stepper motors, cavities, spectroscopy cells, photonic