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Field
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acquisition techniques are combined to extract nanoscale dimensional information well below conventional diffraction limits. These measurements are optimized by tailoring the illumination so as to yield
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backgrounds (IPAG, LaMPEA, LAPCOS, MONARIS, LPG). Availability of technical resources: LPG/OSUNA: Hyperspectral platform, Raman and FTIR spectroscopy, geochemistry platform IMN: X-ray diffraction (XRD) and
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spintronics. Specifically, electron spectroscopy, electron diffraction, and scanning tunneling microscopy techniques will be used in vacuum. Magneto-optical characterizations will be performed on an optical
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Your Job: Many technologically important material properties are closely related to disorder and short-range structural correlations. Diffuse scattering observed in a diffraction experiment on
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the use of light to probe and drive optomechanical systems for use in practical sensors and fundamental quantum measurement science. Our primary current research direction involves the use of diffractive
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. Moreover, the postdoc will developp simulations and analysis of a channel within the exclusive, tagged and diffractive working group of the ePIC collaboration. The post-doctoral fellow will be in charge of
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-resolution imaging (twice the diffraction limit). This is accomplished by acquiring sequential speckle illumination images and processing them using Random Illumination Microscopy (RIM). This wide-field CARS
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environment will facilitate the development of new skills and the demonstration of creativity and leadership. Expertise in structure solution using powder and/or single crystal X-ray diffraction-based
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complementary suite of in-house analytical techniques, including spectroscopies (infrared, Raman, UV), powder X-ray diffraction, optical microscopy, and differential scanning calorimetry. These projects
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include Atomic, Molecular and Optical (AMO) science, time-resolved X-ray diffraction and spectroscopy and ultrafast optical spectroscopy. Junior-scientist / PhD-student – Laser physics and applications (308