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in Dresden. For a position in the research group “Laser Science and Technology” located at DESY, we are looking for a Postdoctoral Scientist / Researcher (m/f/d) in the field of ultra-short pulse laser
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following strong-field ionization, using coincidence and correlation measurements. Map how entanglement depends on laser intensity, wavelength, pulse duration, and carrier-envelope phase, and on the number
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apparatus and diagnostic methods to explore the interaction between an optical plasma, generated by a high intensity laser pulse, and a liquid where the breakdown occurs. This will involve constructing a
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on various installations (laser fs or ns, XFEL, synchrotrons, high pulse power), and developing numerical simulations and analysis tools. In order to develop new models into ESTHER, the candidate will be
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is currently the main technological challenge, while achieving anisotropic laser sidewalls without lateral degradation of the quantum wells. Pulsed plasma technologies, known to improve etch
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, which will be explored in the context of neuromorphic applications. The successful candidate will be responsible for: • Fabricating heterostructures by pulsed laser deposition (PLD); • Implementing
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technologies for remote detection. Specifically, this position involves research on generation of widely tunable GHz-THz femtosecond pulse bursts to optimize laser-matter coupling, plasma generation, and
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Laser Doping or Pulsed Laser Induced Epitaxy, allowing the fabrication of ultra-doped Si:B layers, well above the B solubility limit in Si. The films will be characterized by X-Ray Diffraction
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project that will establish attosecond chiroptical pump-probe spectroscopy. The project combines a 100 kHz few-cycle Yb-fibre laser, circularly polarized isolated attosecond pulses, tuneable 1-2 fs deep
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of advanced laser systems, the design and construction of pulse compression systems, performing ultrafast laser experiments, and building and operating optical characterization devices. Run existing simulation