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Delft University of Technology hosts a PhD project focused on Quantum CFD, combining numerical analysis, quantum computing and aerospace engineering. You will design and test quantum algorithms, develop software, and evaluate performance on simulators and potential real quantum hardware.
The project is part of TU Delft's Quantum-CFD Lab, funded by IHI Corporation, offering an interdisciplinary research environment with world-class facilities.
Are you passionate about quantum computing, numerical simulations, and aerospace? Join our team and collaborate with industry partners to bring quantum computing closer to real-world engineering.
The aerospace sector faces increasingly complex engineering challenges. Designing the next generation of aircraft, spacecraft, and propulsion systems requires numerical simulations that are both more accurate and computationally more demanding than ever before. While Computational Fluid Dynamics (CFD) has become indispensable for aerospace design, many important problems—including high-fidelity flow simulations, uncertainty quantification, and multidisciplinary optimization—remain beyond the reach of today’s supercomputers.
Quantum computing offers a fundamentally new approach to scientific computing. Although large-scale quantum computers are still under development, they have the potential to solve certain computational problems far more efficiently than classical machines. Realizing this potential requires entirely new numerical algorithms that combine advances in quantum computing with decades of expertise in computational science.
In this PhD project, you will help develop the foundations of Quantum Computational Fluid Dynamics (Quantum CFD). You will investigate how fluid dynamics can be simulated on quantum computers by designing novel quantum algorithms, implementing software, and evaluating their performance on quantum computer simulators and potentially real-world quantum computers. The project combines numerical analysis, scientific computing, quantum computing, and aerospace engineering in an exciting interdisciplinary research environment.
You will be part of TU Delft's Quantum-CFD Lab, which has long-term experience in developing quantum lattice Boltzmann methods. This position is funded by IHI Corporation, one of Japan’s leading engineering companies and a global technology leader in aerospace, energy, and industrial systems. Working closely with both TU Delft and IHI, you will contribute to research at the interface of fundamental science and future industrial applications in the aerospace sector.
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Working at TU Delft means contributing to solutions that really make a difference.
At TU Delft, our people make the difference. With their knowledge and curiosity, our staff provide a high-quality education and conduct pioneering research that extends beyond the campus. You will have the opportunity to take the initiative, work with others, and grow as a professional. Working at TU Delft means joining an international community of professionals and students.
The Faculty of Electrical Engineering, Mathematics and Computer Science (EEMCS) brings together three scientific disciplines. Combined, they reinforce each other and are the driving force behind the technology we all use in our daily lives. There is plenty of room at the faculty for ground-breaking research. We educate innovative engineers and have excellent labs and facilities that underline our strong international position.
Doctoral candidates will be offered a 4-year period of employment in principle, but in the form of 2 employment contracts. An initial 1.5 year contract with an official go/no go progress assessment within 15 months, followed by an additional contract for the remaining 2.5 years assuming everything goes well and performance requirements are met.
As a PhD candidate you will be enrolled in the TU Delft Graduate School. The TU Delft Graduate School provides an inspiring research environment with an excellent team of supervisors, academic staff and a mentor. The Doctoral Education Programme is aimed at developing your transferable, discipline-related and research skills.