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Fraunhofer@NTU invites applications for a Research Associate (full-time) focusing on quantum hacking and QKD security evaluation. You will work in an interdisciplinary team of quantum security experts, QKD system engineers, optical physicists, and cryptographic evaluation specialists.
The role combines hands-on security testing, hardware-level assurance, and contributing to open-source, high-assurance QKD reference systems, with collaboration across industry and academia to align with
The Fraunhofer Singapore Research Centre FSR@NTU is an independent research centre established at Nanyang Technological University (NTU). It forms part of the Fraunhofer-Gesellschaft (www.fraunhofer.de), one of the worlds leading applied research organizations with around 32,000 employees, predominantly scientists and engineers.
In Singapore, Fraunhofer operates two closely linked but legally independent entities: Fraunhofer@NTU (FSR@NTU) and Fraunhofer Singapore Research Ltd - the first Fraunhofer affiliate in Asia. Both work in joint facilities to advance applied R&D bridging academia and industry in cutting-edge technological domains.
We invite applications for a Research Associate (full-time) focusing on quantum hacking and quantum key distribution (QKD) security evaluation. You will work in an interdisciplinary and international team of quantum security experts, QKD system engineers, optical physicists, quantum information theorists, and cryptographic evaluation specialists. The joint mission: to build and validate next-generation frameworks for testing, evaluating, and certifying QKD systems and components in both laboratory and production environments.
This position will directly contribute to applied quantum communication security programmes in collaboration with academic and industrial partners. The role combines deep experimental work, hands-on system engineering, and methodical vulnerability analysis of practical QKD systems and components. It offers a unique opportunity to contribute to the future of trusted quantum communication, combining hands-on security evaluation, hardware-level assurance, and CC certification research, as well as contributing to high-assurance QKD system designs and implementations.
You will help define how quantum and classical cybersecurity converge - driving new assurance methodologies for quantum-safe communication systems at the interface of applied research, certification, and innovation.
We regret that only shortlisted candidates will be notified.