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experience in at least some of the following areas: (magneto-)optical spectroscopy at cryogenic conditions, exfoliation and stacking of two-dimensional materials, design and handling charge-tunable
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internet. While most implementations rely on polarization entanglement, limited to two-dimensional encoding, high-dimensional states, e.g., based on the orbital angular momentum (OAM) of light, enable richer
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of two-dimensional materials, design and handling charge-tunable semiconductor structures, exfoliation and stacking of two-dimensional materials and fabrication of vdW heterostructures, clean-room
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or multilayer two-dimensional (2D) transition metal carbides and nitrides and are widely recognized as one of the fastest growing areas in 2D materials research due to their exceptional physical and structural
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areas of chemistry such as analytical chemistry, physical chemistry, materials chemistry, inorganic and structural chemistry and organic chemistry. The research projects are many from theory to experiment
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biobanking of patient material Integrate comprehensive multi-omics datasets—including metabolomics, high-dimensional flow cytometry, and multiplex imaging—to accurately determine crucial molecular and cellular
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methods. - Collaborate in the fabrication, integration, and calibration of prototypes based on linear and two-dimensional arrays. - Perform data acquisition, management, and post-processing tasks for data
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properties of novel two-dimensional materials combined with quantum dot nanostructures: spectroscopic investigations of two-dimensional semiconductors, measurements and analysis using microscopy and time
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two-dimensional materials coupled to THz radiation: spectroscopic investigations of two-dimensional semiconductors, measurements and analysis using linear and non-linear microscopy combining optical and
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research on optical and electronic properties of novel two-dimensional materials combined with quantum dot nanostructures: spectroscopic investigations of two-dimensional semiconductors, measurements and