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Field
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at the Fraunhofer ILT works closely with partners from industry and research on the development of process and system technology for laser metal deposition. The EHLA process (extreme high-speed laser
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— the conversion of photon energy into matter via the multiphoton Breit-Wheeler process, enabled by the advent of multi-petawatt laser technologies. The primary objective of the project is to exploit the theory and
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efficient material processing techniques that combine high optical quality with utmost precision through direct laser writing. This capability, responding to challenges in nanofabrication, could unlock new
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pulses. He or she shall contribute to activities such as - Experimental analysis and/or modeling of the interactions and material responses - performance optimization of laser writing processes (Process
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control environment. The participant will become familiar with the design, fabrication, operation, and validation of class 4 laser sensing using laser induced breakdown spectroscopy (LIBS). The participant
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Vision Laser processing is fundamental to advanced manufacturing, powering precision welding in battery manufacturing, high-performance turbine drilling, and cutting advanced materials for clean
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- Experimental analysis and/or modeling of the interactions and material responses - performance optimization of laser writing processes (Process engineering) and technological demonstrations - participation in
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As part of its commitment to expand its world-recognized high intensity laser science and technology program with applications that include laser-matter interactions, the Department of Electrical
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. et al. (2021). Measurement Uncertainty of Surface Temperature Distributions for Laser Powder Bed Fusion Processes. Journal of Research of NIST, 126, Article 126013. metal additive manufacturing; laser
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Heating Technologies« group, we develop innovative laser systems for the modern production of the future. Our unique machinery at the Fraunhofer IPT covers prototypical processes of additive manufacturing