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microscopes (STM) and atomic force microscopes (AFM) operating in ultra-low temperatures (10 mK), ultra-high vacuum (UHV), and high magnetic fields (0-15 T). This experience should include the following sub
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, relevant x-ray (imaging) techniques, like fluorescence mapping, hard x-ray coherent diffraction and/or tomography, or experience in magnetic measurements and/or STM/AFM As a person you are someone who
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intermoléculaire sur surface et former des matériaux 2D ou SCOFs. Ces monocouches moléculaires seront caractérisées in situ par microscopie à effet tunnel (STM) et à force atomique sans contact (nc-AFM) pour
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found here https://www.maxiv.lu.se/beamlines- accelerators/support-labs/microscopy-labs/ . This is a temporary position from March until October 2026. Qualifications for a successful candidate are: Hold
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resolved structure and electrocatalytic properties of complex metal-oxide surfaces. Atomically defined model catalyst samples will be prepared and characterized using surface science methods (XPS, LEED, STM
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science. Preferably you have a background in STM/STS, photoelectron spectroscopy (ARPES, XPS) or Atomic Force Microscopy (AFM). Preferably you have experience with Ultra High Vacuum sample preparation
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science. Preferably you have a background in STM/STS, photoelectron spectroscopy (ARPES, XPS) or Atomic Force Microscopy (AFM). Preferably you have experience with Ultra High Vacuum sample preparation
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, AES, AFM, STM, MBE, knowledge of DFT calculation methods, history of significant international scientific activity (e.g. a documented internship abroad, participation in international conferences
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variety of nanoscale measurement and manipulation techniques, ranging from scanning probe microscopies, such as atomic force (AFM), scanning tunneling (STM), and nearfield optical (NSOM), to sample