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-ultraviolet and near-infrared pulses, and electron-ion coincidence detection in a reaction microscope. The scientific programme addresses chiral electronic wave packets, charge migration and charge transfer
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research infrastructure at the Institute of Plant Sciences in Bern, Switzerland (http://www.ips.unibe.ch/ ). We are also affiliated with the Microscope Imaging Centre (www.mic.unibe.ch ) and the Oeschger
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are prohibitively slow for practical semiconductor metrology and inspection applications. Unlike most samples placed under a microscope, microchips are manufactured objects that follow strict design rules
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strong connection to microscopic theory and, where appropriate, future technological opportunities. Project background The project investigates how intense ultrafast optical or Terahertz excitation can
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mills and electron microscopes. The position is closely connected to two national research initiatives focusing on the synthesis of sustainable fuels and chemicals providing many opportunities to interact