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an innovative femtosecond laser bench to modify the characteristics of nanoparticles for fibre lengths ranging from µm to km, with possible variations in the characteristics of nanoparticles over micrometric
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possible to produce table-top ultrashort XUV pulses from a laser. The objective of the PhD project is to develop a new optical setup for UV-visible pump/XUV probe femtosecond spectroscopy and use it in gas
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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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Max Planck Institute for the Structure and Dynamics of Matter, Hamburg | Hamburg, Hamburg | Germany | 3 days ago
to microstructure quantum matter from millimeter to nanometric features. This platform is comprised of a dual beam Ga-SEM system as well as a tri-beam Multi-Species-Plasma-FIB - SEM – Femtosecond Laser from Thermo
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responsibility involves to maintain, further develop, and supervise a project on ultrafast spin and carrier dynamics in magnetic systems and quantum materials. The current setup consists of a femtosecond laser
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Offer Description Title: Frequency-comb-based spectroscopy of trapped and cold molecular ions Key-words: Ion trapping and laser-cooling, cold molecular ions, spectroscopy, quantum state control
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, and scalability when illuminated with femtosecond laser pulses. Requirements Research FieldChemistryEducation LevelMaster Degree or equivalent Research FieldPhysicsEducation LevelMaster Degree
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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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a femtosecond laser spectroscopy setup. You will use and develop advanced X-ray spectroscopy theory and data analysis tools. You will prepare samples and characterize them using in-house facilities
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Rheinland-Pfälzische Technische Universität Kaiserslautern-Landau | Kaiserslautern, Rheinland Pfalz | Germany | 21 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