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physics of sliding ferroelectricity. The ultimate ambition is to develop a strategy to optically switch these domains, laying the groundwork for novel optoelectronic devices. Such a system could serve as a
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 days ago
at Physics and Astronomy of UNC-CH is seeking a postdoc researcher to work on developing hybrid optoelectronic, photonic, and magnonic platforms for advanced quantum signal sensing and energy transduction
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. The successful candidate will be joining the Optoelectronics group led by Prof. Dr. Valerio Pruneri. The successful candidate will be responsible for various tasks related to the simulation, planning, development
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AI-driven process control and optimization - CMOS-compatible fabrication and integration for electronic, photonic, optoelectronic, and quantum devices - Sustainability in semiconductor manufacturing
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standing in optoelectronic materials research, driving innovation in smart devices and surfaces. As part of the College's Leading Research Centres initiative, the Coordinator will provide operational and
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University of California, Los Angeles | Los Angeles, California | United States | about 22 hours ago
, with particular interest towards • Semiconductor materials, devices, and packaging for applications including but not limited to electronics, interconnects, optoelectronics, quantum phenomena, and
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Posting Details Position Details Title Postdoctoral Fellow - Organic Optoelectronic Materials Appointment Status Non-Tenure Track Department IU Bloomington Chemistry Location Bloomington Position
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wafer-level fabrication, preferably with 8-inch wafers; In-depth understanding of the physics of electronic and optoelectronic devices; Experience supervising and mentoring young researchers and graduate
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for nanoscale materials and devices - Semiconductor manufacturing automation, and AI-driven process control and optimization - CMOS-compatible fabrication and integration for electronic, photonic, optoelectronic
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strategic research priorities, with a primary focus on supporting the Centre for Opto-Electronic Materials and Sensors (COMAS). This role will strengthen RMIT's national and global standing in optoelectronic