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Field
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techniques to control the growth environment and material consistency across the wafer targeting applications in microelectronics and quantum information science. This position resides in the Functional Hybrid
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2D THz spectrometer. The spectrometer is being developed to study dynamics in novel magnetic quantum materials developed as part of an MRSEC center at UD. This postdoctoral position offers an exciting
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on angle-resolved photoemission (ARPES) and scanning tunneling spectroscopy (STS/STM) based studies of topological, strongly correlated and novel 2D quantum materials including unconventional superconductors
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includes security, IoT, unmanned aerial vehicles, integrated satellite-terrestrial networks, quantum communications, spectrum management, tactile internet, earth observation, and autonomous transportation
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national and international ML/DL communities, most importantly in helmholtz.ai, the Helmholtz Artificial Intelligence Cooperation Unit: https://www.helmholtz.ai/ Present research results at scientific
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team that focuses on materials for classical microelectronic interfaces and quantum information science. The group actively interacts with the broader Argonne and UChicago community of scientists as
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in the best interest of our communities. We are encouraged to Be Curious about opportunities for learning, creating, discovering, and innovating, and are encouraged to learn from failure. Show Your
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relevant to quantum materials. Because of the sophistication of the instrumentation and the uniqueness of the instrument, you are expected to demonstrate your strong expertise, particularly through practical
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spectroscopy (EDS) and electron energy loss spectroscopy (EELS). The research will involve state-of-the-art nanomaterials for energy and environmental applications as well as nanomaterials for quantum
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. Empa is a research institution of the ETH Domain. Dual-comb spectroscopy (DCS) is a rapidly evolving techniques opening up new fields of applications. Our aim is to leverage on quantum cascade laser (QCL