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microfabrication including quantum dot imaging, UV and e-beam lithography, reactive ion etching and wet chemical etching and metal deposition (PhD2). Perform optical characterization of the fabricated devices in
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, Germany [map ] Subject Areas: Physics / Cold Atom Physics , Atomic, Molecular, and Optical Physics , Gravitational Physics , Metrology , Optics and Photonics , Quantum Devices and Sensing , Quantum Optics
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(bio-)chemistry, physics, and engineering expertise to study molecules and cells, taking advantage of optical and single-molecule imaging, molecular probes, molecular biology, and 'large' data analysis
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. The overarching goal of this newly funded project is to realize quantum light sources coupled to quantum memories. Quantum memories are key components of optical quantum computers and scalable quantum networks
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to design and perform experiments to identify pathological mechanisms underlying craniofacial pain (e.g. temporomandibular disorders pain, migraine, and eye pain) and arthritis pain (e.g. psoriatic arthritis
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the precursors and optimize the fabrication process. We also seek to combine the electrical, structural, and optical measurements to study the performance of perovskite-based solar cells in operando. X-ray nano
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the precursors and optimize the fabrication process. We also seek to combine the electrical, structural, and optical measurements to study the performance of perovskite-based solar cells in operando . - X-ray nano
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Degree Dr rer nat/PhD Course location Jena In cooperation with Helmholtz Graduate School for Hadron and Ion Research, Abbe School of Photonics, Graduate Academy of FSU Jena Teaching language English