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Field
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excited to recruit postdocs with experience in optics, two-dimensional materials and a strong theoretical background. Applicants should have a Ph.D. in quantum physics, electrical engineering or a related
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FGFs and other lightning-generated high-energy radiation, then using radio and optical predictions from this model to compare against ALOFT observations to ultimately solve the FGF puzzle while
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, electrical engineering, or materials science. Prior experience in nanodevice fabrication and electrical/optical measurements is preferred but not required. The position is available immediately. Our research
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implications for tissue engineering and birth defects. We study the developing zebrafish heart, which allows advanced optical, genetic, and biophysical manipulation. Using a systems biology approach, we
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related field Technical hands-on experience in experimental ultrafast optics, mid-infrared optics, or related field Ability to lead a research project under strict timelines with minimal supervision Good
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lasers to atomic transitions, fiber optic design and operation, multilevel rate equation simulations, and careful characterization of systematic effects. Key responsibilities will include but are not
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support the wider community. At the Francis Crick Institute, we believe that diversity and inclusion are essential to driving innovation and scientific discovery. We are committed to creating a workplace
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and radiation detection/optoelectronics, hands-on fabrication/characterization capability, and excellent communication; relevant radiation/laser licensing is advantageous. Key Responsibilities: Lead the
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other related fields. • Expertise in optical imaging and nanocatalysis • Published in reputable international journals. • Responsible and able to work independently. • Good written and spoken communication
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The School of Mechanical & Aerospace Engineering (MAE) is a robust, dynamic and multi-disciplinary international research community comprising of world-class scientists and bright students. MAE