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Field
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physics and materials research Your Tasks In-house research in the fields of spintronics/magnetisation dynamics/topological phases. Installation and further development of an existing femtosecond laser
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imaging techniques. The successful applicant will be part of a multidisciplinary team constructing a new laser laboratory at the Rutherford Appleton Labs in Harwell, home of the most powerful femtosecond
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laboratory at the Rutherford Appleton Labs in Harwell, home of the most powerful femtosecond lasers in the UK, and of the Rosalind Franklin Institute (RFI), a new UK research institute with a focus in
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The Research Fellow will work on a project to conduct the research on development of high-energy femtosecond fibre lasers for multiphoton imaging applications. The project is to introduce innovative
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assembly of nanomaterials is a plus but not required. Essential skills for this role include the ability to design, assemble, and align optical setups built around femtosecond pulsed lasers, integrate
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Rheinland-Pfälzische Technische Universität Kaiserslautern-Landau | Kaiserslautern, Rheinland Pfalz | Germany | 22 days ago
of MIR molecularfingerprints, using cutting-edge femtosecond laser technology and nonlinear optics. • Develop high-throughput FRS-based sub-MIR-wavelength microscopy and tomography. •Collaborate with
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of processes selected from the following: additive manufacturing (to yield micro-structures), subtractive processes based on electrochemical etching and photolithography and finally femtosecond laser ablation
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The Ultrafast Chiral Dynamics Laboratory at University of Basel, led by Prof. Malte Oppermann, develops time-resolved laser spectroscopy techniques to capture both the structural and electronic
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elements. These elements will be fabricated in glass using precision femtosecond laser machining that employs adaptive optics to correct aberrations induced when focusing into the substrate. You should
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the development of a complex ultrafast multipulse spectroscopic approach, based on the electronic synchronization of multiple, brand new custom-made femtosecond and nanosecond laser systems. We will probe ultrafast