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-built instrumentation for confocal microscopy, carry out optically detected magnetic resonance experiments with single-spin quantum sensors, and perform accompanying spin-dynamics simulations. The project
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experience levels Configure and operate wearable smart glasses and synchronised multimodal recording systems capturing eye-tracking, audio, video, and digital documentation Recruit and conduct simulation
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» Biophysics Physics » Chemical physics Physics » Computational physics Physics » Condensed matter properties Physics » Electromagnetism Physics » Mathematical physics Physics » Optics Physics » Quantum
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infrastructure. Project background Seismic and fiber-optic sensing technologies offer promising solutions for the real-time detection, localization and characterization of explosions and related hazardous events
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-ray diffraction The samples will be further characteried with optical spectroscopy experiments, as well as magnetothermodynamic, magnetomechanical and magnetoacoustic measurements at mK-temperatures and
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performs research on nanomaterial engineering, micro-optics and microfluidics, which provides a wide range of opportunities for the PhD candidate. Your profile We are looking for suitable candidates with a
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physics Physics » Biophysics Physics » Chemical physics Physics » Computational physics Physics » Condensed matter properties Physics » Electromagnetism Physics » Mathematical physics Physics » Optics
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that autonomously optimizes 3D velocimetry measurements by dynamically adjusting camera positions and optical parameters. Integrating the framework within a digital twin environment for pre-training and simulation
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materials. The work will involve sample synthesis, X-ray diffraction, optical spectroscopy experiments, as well as magnetothermodynamic, magnetomechanical and magnetoacoustic measurements at mK-temperatures