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Field
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of the femtosecond laser chains and infrared detection chains used in this research work. The activities associated with this position form part of the international effort to develop new laser sources and optical
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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