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Dortmund location within the Bioimaging Working Group (Biospectroscopy Department): PhD Candidate (m/f/d) The doctoral research project investigates the role of tissue-resident and inflammation-recruited
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 17 hours ago
. Description: This opportunity involves research and development activities in the following technology areas: 1. Chip-scale stable laser systems using MEMS and nanophotonic technologies including but not
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Researcher Profile First Stage Researcher (R1) Positions PhD Positions Country Germany Application Deadline 15 Mar 2026 - 23:59 (Europe/Berlin) Type of Contract To be defined Job Status Full-time Offer
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the supervision of PhD or Master students. The recruited person will exploit the existing test benches (Beta source and infrared laser) developed for the first EICROC protype (EICROC0, 4x4 channels) to characterize
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Dortmund location within the Bioimaging Working Group (Biospectroscopy Department): PhD Candidate (m/f/d) The doctoral research project investigates the role of tissue-resident and inflammation-recruited
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, flexibility and adaptability to multitask Selection criteria Indispensable requirements: PhD in an area related with the position duties, preferable in the area of condensed matter physics, Nanoscience or Laser
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measurement techniques such as particle image velocimetry (PIV), laser Doppler velocimetry (LDV), and hot- or cold-wire anemometry is highly desirable. Computational Fluid Mechanics position: - PhD in
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. The current position will be within a project aiming at developing quantum network nodes with laser cooled atoms, including highly excited Rydberg atoms as well as with single rare-earth ions in the solid-state
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ICFO’s Attoscience and Ultrafast Optics group works in a highly interdisciplinary field which fuses ultrafast laser physics, extreme nonlinear optics, atomic and molecular physics, SXR spectroscopy
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of reactor systems for power generation. This PhD project will focus on the engineering of laser additive manufacturing (AM) to support the design and fabrication of resilient components for fusion reactors