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'noiseless' optical parametric amplifiers based on silicon nitride or thin-film lithium niobate intended for optical communication applications but also other emerging applications. Our research is both
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layers that are arranged in thin films or nanoparticles. Through your studies, you will change surface terminations, and investigate the emerging properties of the materials in their interaction with
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good communication and management skills. Your workplace Division of Thin Film Physics perform research and undergraduate education within the material science area. You will belong to the Functional
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the project involve Swedish researcher and industrial partner, emphasis will be placed on personal qualities for very good communication and management skills. Your workplace Division of Thin Film
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'noiseless' optical parametric amplifiers based on silicon nitride or thin-film lithium niobate intended for optical communication applications but also other emerging applications. Our research is both
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dedicated to fundamental understanding as well as development of effective and low-cost solar cells based on thin film technologies. The focus is on materials containing chalcogens such as sulfur and selenium
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The project focuses on the preparation and functional studies of metal-organic frameworks (MOFs) with redox active components as thin films on conducting substrates. Particular focus will lie on studies
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route comprising thin film deposition, thermodynamic interface reaction, and chemical etching. A promising candidate will primarily optimize the deposition and subsequent physical-chemical processes
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) . The division is divided in three research units; Materials theory, Applied electrochemistry, and Thin films and nanolaminated materials. The post doc will be working in the latter unit, but will collaborate