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and verifiably safe. We consider resilience and intelligence to be part of the same process. What you will do Quantum computing is predicted as disruptive, emerging technology with potential big impact
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selective laser-induced etching (SLE), are used to produce high-precision glass components for the semiconductor industry, medical technology, the optics industry or quantum technology with detailed
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and verifiably safe. We consider resilience and intelligence to be part of the same process. What you will do Quantum Computing is a novel, disruptive technology with the potential to speed up
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-precision glass components for the semiconductor industry, medical technology or quantum technology with detailed dimensions <1 μm. The spatial and temporal beam shape of the laser pulses is decisive for
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methods to the construction of prototypes and pilot series for applications in the wavelength range from millimeter to nanometer. The Fraunhofer IOF is also pioneering applied optical quantum technology
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modulator chips for high-speed data transmission, quantum communication, and sensing applications Development and adaptation of indium phosphide and thin-film lithium niobate technology processes
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Fraunhofer FHR in Wachtberg near Bonn is part of the large Fraunhofer-Gesellschaft and one of the leading and largest European research institutes in the field of high-frequency physics and radar
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In cooperation with the Department of Laser Technology at RWTH TOS, the Fraunhofer Institute for Laser Technology ILT, Europe's leading center for contract research and development in the field
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-linked environmental or biosensor technology to hardware-integrated security primitives, as well as breakthroughs in quantum computing or quantum sensor technology. We propose a topic tailored to student
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partners from industry and science, we research and develop electronic, optoelectronic as well as quantum technological devices and systems. The focus is on research and development for applications in