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to develop a conceptually new type of image sensor based on perovskite materials. Related publications: Tsarev, S., et al., Vertically stacked monolithic perovskite colour photodetectors. Nature, 2025. 642
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sensor based on perovskite materials. Related publications: Tsarev, S., et al., Vertically stacked monolithic perovskite colour photodetectors. Nature, 2025. 642(8068): p. 592-598. Wu, E., et al., A CMOS
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conceptually new type of image sensor based on perovskite materials. Related publications: 1. Tsarev, S., et al., Vertically stacked monolithic perovskite colour photodetectors. Nature, 2025. 642(8068): p. 592
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ICFO is offering 1 Predoctoral fellowship position to well-qualified graduate students, who wish to obtain a doctoral degree in the Functional Optoelectronic Nanomaterials Research Group at ICFO. . Our PhD-program brings together top-level training and teaching for young scientists , benefiting...
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of mobile and optical communication networks and systems as well as video signal coding and data processing. In the field of photodetectors, HHI has a leading position worldwide. The dynamics of this field
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2 Sep 2025 Job Information Organisation/Company ICFO - The Institute of Photonic Sciences Research Field Engineering Researcher Profile Other Profession Positions PhD Positions Country Spain Application Deadline 15 Sep 2025 - 00:00 (Europe/Madrid) Type of Contract Temporary Job...
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optical waveguides, optical single-mode fibers, lasers, lenses and photodetectors Experience from preparing project proposals or commercial offers relating to photonics technology development Experience
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physics that govern the operation of opto-electronic devices such as photodetectors, avalanche photodiodes (APDs) and/or Single Photon Avalanche Diodes (SPADs) with the ability to take full advantage
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piezoelectric, transport, and optoelectronic phenomena. Current device interests include nanowire lasers, LEDs, photodetectors (primarily in the UV), solar cells, UV and visible light emitters (i.e., for solid
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attracted considerable attention for potential application in nanoscale devices, including beyond-CMOS electronics, quantum computers, chemical sensors, photodetectors, etc. Prospective advantages over