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, and performing characterization and optimization. Key Responsibilities: Design and assemble a compact mid-infrared laser system capable of generating high-average-power and high-peak-power femtosecond
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laser structures for backreflection-resilient operation Develop and optimize silicon plasma dispersive devices for on-chip optical isolation Fabricate heterogeneous lithium tantalate photonic isolators
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design and EDA research initiatives. Design, implement, and evaluate digital ICs using Verilog/SystemVerilog and related hardware description languages. Develop and optimize EDA workflows for processor and
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Responsibilities: Develop and optimize synthetic routes for redox-active and conductive MOFs. Investigate the electrochemical performance of these materials under diverse conditions and in various energy storage
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research. Key Responsibilities: Develop and run a Cu–Cu hybrid bonding flow for fine-pitch 3D integration. Optimize process windows (pressure/temperature/anneal/surface activation) to minimize contact
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algorithms that significantly reduce computation cost, memory footprint, and power consumption. Design and optimize efficient training and inference pipelines for foundation models (LLM, VLM, VLA) across
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to project implementation details. Job Requirements PhD degree in engineering (e.g. Mechanical, Clean/Renewable Energy or Building related) or sustainable buildings design. Experience in sustainable design
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optimal control approaches and conduct test-bedding • Collaborate with project partners and mentor junior researchers • Prepare project reports and publish research findings with industry engagement Job
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and delivery of milestones across the 36-month project, plus contributions to publications, IP and grant proposals. Candidates should hold a PhD in a relevant field with strong experience in perovskites
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Research Fellow to join our multidisciplinary team in advancing composite materials for additive manufacturing (AM). The successful candidate will explore and optimize a broad spectrum of functional material