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Field
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propagation, low-energy switching, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states with on-chip detection and readout
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polariton propagation, low-energy switching concepts, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states to on-chip detection
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trajectory within a highly collaborative and well-resourced environment. Research Areas Sonogenetics — engineering ultrasound-responsive genetic circuits for non-invasive cellular control Mechanotransduction
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In 2021 the Singapore Hybrid-Integrated Next-Generation micro-Electronics (SHINE) Center was established. One of the projects in SHINE focusses on developing the necessary technology and
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-jitter characterization; photon-number-resolving operation; and detector integration with quantum photonic circuits. The role also includes nanofabrication and process development for integrated photonic
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/functional materials, wearable sensors, flexible circuits and their seamless integration into textiles/apparel; (c) perform physical, chemical, and electrical characterisations on new materials and wearable
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related areas. EVALUATION CRITERIA The selection will be based on the following criteria: Integrated circuit design courses (30%) Experience with DVFS for RISC-V, LoRaWAN and RTL design (60%) Academic
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of the recruitment and description of the project This position is with the E01 Group (Data Integration & XAI Group; Principal Investigator: Assoc. Prof. Harumi Nishi, Tohoku University) of the MEXT/JSPS
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implicated genes act in neurons and circuits. We use large scale, unbiased, systematic approaches in collaborative multidisciplinary research teams. This postdoctoral fellowship in the Arlotta lab involves
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on open-source processor and accelerator architectures. The role focuses on advancing research in integrated circuit (IC) design and electronic design automation (EDA), with particular emphasis on RISC-V