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Conduct research in high harmonic generation, ultrafast XUV science and related applications. Develop and optimize HHG sources, diagnostics and experimental methods, with emphasis on photon flux, stability
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: Decoding the mechanisms of temperature sensing by ion channels Developing and applying time-resolved cryo-EM to capture previously inaccessible conformational states Engineering ultrafast perturbation
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The Brummerstedt Iversen group at Department of Chemistry, Aarhus University is seeking candidates for two post-doctoral positions within the fields of ultrafast crystallography and single crystal
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The Ultrafast Spectroscopy and Attosecond Science group at the Laboratory of Physical Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich develops experimental methods for measuring and
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is supported by a DOE-funded research program on ultrafast science involving Argonne National Laboratory, University of Washington, and MIT. The goal of this research program is to understand and
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University. The groups are involved in several projects concerning ultrafast spectroscopy of quantum materials, including THz microscopy, as well as research on 2D materials and their heterostructures
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plasmon-enhanced spectroscopy. The successful candidate will develop and apply advanced optical techniques including dark-field spectroscopy, Raman spectroscopy, ultrafast and nonlinear optical measurements
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absorption and fluorescence upconversion spectroscopies. Research will focus on the investigation of ultrafast electron dynamics and mechanism of near-infrared fluorescence of atomically precise nanoclusters
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(1) Applicants with expertise in one or more of the following areas are encouraged to apply: Imaging system and hardware development Robotics Ultrasound imaging, including ultrafast ultrasound
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to become an independent researcher. Key Responsibilities The successful candidate will lead a team of bioengineers, protein biochemists, and ultrafast spectroscopists to develop, deploy, and elucidate