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- Institute of Photonic Sciences
- ICN2
- Computer Vision Center
- Basque Center for Macromolecular Design and Engineering, POLYMAT Fundazioa
- Forest Science and Technology Centre of Catalonia
- IDIVAL
- Institut d’Investigació Biomèdica de Girona Dr. Josep Trueta (IDIBGI-CERCA)
- State Key Laboratory of Ultrasound in Medicine and Engineering, Chongqing Medical University.
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record to contribute to the development and automation of advanced electrolysis systems. The successful candidates will work on the automation, operation and optimization of electrochemical systems
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microscope that allows one to perform single-atom and single-site resolved fluorescence images of strontium Hubbard systems for the first time. Furthermore, we have very recently been able to push our setup
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candidate will be expected to: Develop and optimize processes for the modification and nanostructuring of glass and optical material surfaces. Investigate relationships between fabrication parameters, surface
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to the development of advanced photonic integrated circuits (PICs) for a wide range of applications, including optical switching and processing. Key Responsibilities: The selected candidate will be expected to: Design
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Skills/Qualifications Fluency in spoken and written English is essential (this will be assessed during the interview). The successful candidate will be responsible for the operation and maintenance
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of advanced photonic integrated circuits (PICs) for optical switching and processing applications. Key Responsibilities: The selected candidate will be expected to: Design, simulate, and optimize integrated
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integrated circuits (PICs) tailored to quantum applications. Quantum technologies, including neutral atom quantum computing and simulation, rely heavily on photonics for encoding, processing, and detecting
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personal or social condition. We are committed to ensuring equal treatment and opportunities in all our processes, especially in recruitment, which is based solely on talent, experience, and ability. We
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in altermagnets to encode and process information. The project involves close collaboration with experimental and theoretical partners, including large-scale synchrotron facilities. The work will be
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, we aim to establish a foundation for compact, sensitive, and fast photonic sensing devices. The same waveguide platform will also be evaluated for use in signal processing applications, where phase