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layers, using transport and optical techniques to measure the relevant properties. They will have the opportunity to work with two large-scale facilities which the research division is responsible
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Group, https://www.chalmers.se/en/departments/e2/research/communications-antennas-and-optical-networks/communication-systems/ , employing around 45 people, including 8 faculty and 25 PhD students. During
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of defect physics and provide fresh insights into the hotly debated topic of 2D material defect passivation, leveraging advanced vibration spectroscopies, time-resolved optical spectroscopy and microscopy
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-development aspects (building optical apparatus) or on the structural biology aspects of the project, however, you should be prepared to cover both to a significant degree. Tasks may include: • Performing and
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to modulate the properties of organic semiconductors Performing optical/electrical measurements to study charge transport and doping effects Implementing the resulting materials and processes into functional
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development. With us, research and education are conducted with an eye towards the future. Our proximity to the business world, both locally and globally, gives us a wide reach and the ability to create change
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the properties of organic semiconductors Performing optical/electrical measurements to study charge transport and doping effects Implementing the resulting materials and processes into functional electronic
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quantum computing, quantum optics, microwave engineering, or related fields in experimental physics. Your verbal and written communication skills in English are good You are motivated for a career in