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Field
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spectroscopy, scanning probe microscopy, magnetometry, and optically-detected magnetic resonance. Develop experimental protocols and assist with the setup, operation, maintenance, and documentation of laboratory
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desirable: microwave engineering, confocal microscopy, scanning probe microscopy, magnetic resonance spectroscopy, and scientific programming in Python. Prior experience with hardware electronics such as
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of Technology. The Junior Research Group focuses on the physical properties of organic molecules, which are investigated using scanning probe microscopy. The group has extensive experience in molecular
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molecule tracking and force spectroscopy, micro/nanofluidics, electron microscopy, scanning probe microscopy, biosensors and bioelectronics, biomedical devices, bioengineering lab automation. Thematic links
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characterization using TEM techniques such as scanning transmission electron microscopy, convergent beam electron diffraction, electron energy loss spectroscopy, and geometrical phase analysis Investigation
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as quantum sensors. This approach will pave the way for a new form of quantum near-field microscopy, in which atomic probes replace the macroscopic tips employed in conventional scanning probe
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adaptability to handle multiple tasks. Experience working in an ultra-high vacuum (UHV) laboratory environment. Knowledge of scanning probe microscopy (STM/STS), surface science, or 2D quantum materials will be
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in physics or materials science; - experience in the preparation of solid surfaces (preferably under UHV conditions) and/or in scanning probe microscopy techniques; - a strong publication record
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use low-temperature scanning probe microscopy (SPM) to experimentally investigate the nature and properties of correlated electrons in van der Waals (vdW) systems, focusing on topological states in
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conditions. These materials will subsequently be studied using STM (to analyze growth) and ESR-STM (to investigate magnetic properties). In recent years, spin-dependent scanning tunneling microscopy (SP-STM