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appreciated. Bibliography: Laser Processing and Chemistry, Dieter Bäuerle, 4th ed., 2011, Springer Pulsed Laser Deposition of Thin Films, Robert Eason (ed.) 2007, Wiley Principles of Measurement Systems, John P
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project, focuses on the development of experimental methodologies for the scientific exploitation of high-repetition-rate pulsed X-ray sources, including synchrotron radiation, free-electron lasers (FELs
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Stanford Departments and Centers: PULSE Institute Postdoc Appointment Term: 1 year with renewals possible up to three years Appointment Start Date: ASAP Group or Departmental Website: http
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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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ultrafast and high-intensity laser systems, as well as laser-driven short-pulse light sources spanning a broad spectral range. These capabilities are combined with advanced nonlinear spectroscopic techniques
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tool for process design and laser-scanning strategies, the integration of simulation and experimental pulse-signal data to characterize lateral energy distribution, and the prediction of material removal
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measurements, such as PLEET and PLIF, utilizing a pulse-burst laser. The postdoc is expected to work closely with the team research engineering and Dr. DeMauro, while also aiding graduate students in
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-power laser pulse compressors. In this position, you will be working in the Department of Physics and Mathematics at the Faculty of Science, Forestry and Technology. This position is a part of the TRADES
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ultrashort X-ray radiation through the interaction of ultra-intense laser pulses with plasmas. Its main research activities include: -the development of compact plasma-based particle accelerators
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and numerical simulation of irradiation of atoms and molecules by laser pulses, First-principles electronic-structure theory using real-time density functional theory. Refereed publications in