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Field
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acoustic imaging and spectroscopic tools to monitor AM processing of metal alloy and ceramic powders using direct energy deposition and powder bed laser sintering. Familiarity with one or more material
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laser deposition, characterization, analyzing data, and writing papers. Major Duties/Responsibilities: Conduct epitaxial synthesis of complex-oxide thin films and heterostructures by pulsed laser
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Additive Friction Stir Deposition (AFSD), cold spray, and laser powder bed fusion (LPBF), with an emphasis on establishing process–structure–property relationships through integrated experimental and
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magnetometers. We work with a variety of international partners, including industrial leaders in biomagnetic instrumentation, in vapor cell miniaturization, and in laser development for atomic sensors. We also
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with matter and pursues applications that emerge from this research. It develops and uses ultrafast and ultra-intense lasers and laser-riven short-pulse light sources in a broad spectral range in
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relevant to defense and industrial applications, including Additive Friction Stir Deposition (AFSD), Cold Spray Additive Manufacturing (CSAM), and Laser Powder Bed Fusion (LPBF). The position encompasses
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applications for two postdoc positions in optics in our institute. Deadline for receipt of applications: May 1, 2026. The candidate will work in the newly created Laboratory of Material Science, Laser, and
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limitations due to ion scattering or electrolyte conductivity. - Implementation of the optical experiment, by coupling infrared lasers to a Fourier transform infrared spectrometer. - Electrochemical and
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of non-weldable Ni-base superalloys and Ti-alloys using recent advances in laser processing and in-situ process control. Position is connected to the competence centre Centre for Additive Manufacture
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strategies will be based in particular on existing (ESI, APCI) and emerging (plasma- or laser-assisted) ionization techniques. How will you contribute? In this role, you will be part of a multicultural and