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, atomic physics, optical physics, electrical engineering, materials science, or a related field Experience in photonic and/or superconducting device nanofabrication Experience working with lasers and
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postdoctoral researcher for an appointment in Prof. Herschel Rabitz's laboratory. This job posting was previously posted as D-25-CHM-00003. The successful candidate will adapt a dual-frequency comb laser for use
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Microscope (SEM). - Perform simulations of tensile tests and nanoindentation in materials produced via Laser Powder Bed Fusion additive manufacturing. - Compare the resulting dislocation microstructures with
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embedded systems from vulnerabilities rooted in sensor physics, studying the impact of physical signals (e.g., acoustics, lasers, electromagnetic emissions) on AI and sensing systems, and innovating hardware
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dementia, and stroke. § Investigating how extracellular vesicles contribute to these diseases. o Laser-capture microdissection of protein aggregates in human brain tissue (e.g., amyloid, tau aggregates
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multiplexed imaging, LMD7 laser microdissection, Orbitrap Ascend mass spectrometry and timsTOF fleX MALDI-2) and collaborations with world-leading proteomics and dermatology experts. This is your chance to
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laser-scanning microscopy imaging of neuronal activity in mutant mice, with a focus on models of high-risk genetic risks for schizophrenia. Our laboratory conducts 2-photon laser-scanning microscopy
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an optoelectronic process for 980 nm high-power diamond laser diodes. In this context, the role of the LSPM is to provide polycrystalline diamond layers 2 to 4 inches in diameter with optimized mechanical
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multiplexed imaging, LMD7 laser microdissection, Orbitrap Ascend mass spectrometry and timsTOF fleX MALDI-2) and collaborations with world-leading proteomics and dermatology experts. This is your chance to
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from MicroCorr, a next-generation imaging platform integrating confocal laser scanning microscopy and Raman microscopy, enabling combined structural, functional, and live/dead-resolved single-cell