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Are you fascinated by application-oriented research in mathematics and eager to work at the interface of numerical optimization, optical design, and uncertainty quantification? In this PhD project, you will focus on developing mathematical models and numerical algorithms that systematically integrate uncertainties into the design process of optical systems. The goal is to enable novel design strategies that are robust with respect to perturbations and capable of balancing multiple competing performance criteria.
Uncertainties are inherent in many engineering design problems and can be translated into the underlying mathematical models. They may, for example, arise from perturbations in boundary conditions, input parameters, or geometrical properties. When neglecting the influence of uncertainties, the performance of a design solution may deteriorate significantly under these perturbations. The aim of robust design strategies is to account for these uncertainties in the design process, yielding solutions that are less sensitive to perturbations and therefore more reliable in practice. Mathematically, this leads to optimization problems with underlying random partial or ordinary differential equations that require careful modeling and analysis.
Imaging optics involves the design and optimization of imaging systems, such as cameras and telescopes, to most accurately capture and reproduce an image. Modern inverse freeform design methods compute surfaces that convert a given source light distribution to a desired target light distribution. These can be used to guide the design process for imaging systems. These methods naturally lead to challenging mathematical models, including nonlinear partial or ordinary differential equations. However, real-world optical systems are subject to manufacturing tolerances, alignment errors, and material variability. To achieve robust designs, existing inverse design methods must be extended to systematically account for these uncertainties.
The design process in imaging optics is inherently multi-objective, involving different competing performance criteria. This could be on a more systematic level the interplay of quality, cost and manufacturability but also image quality itself can be described by competing performance measures.
A further challenge is therefore to account for the effect of uncertainties on different performance criteria.
Standard formulations for single-criteria robust design do not capture these effects. This requires the development of new formulations and strategies building upon modern robust multi-criteria optimization methods based on Pareto losses.
The aim of this PhD project is to extend the existing freeform design strategies to include uncertainties using spectral methods for uncertainty quantification, such as polynomial chaos expansions, and enable the analysis of trade-off solutions under uncertainty. This allows for the integration of uncertainties in the freeform design of optical systems with a specific focus on telescopic systems. The mathematical disciplines involved are mathematical modeling, numerical analysis, and scientific computing.
Your tasks will involve:
You will be part of our Computational Illumination Optics group at TU/e, an applied mathematics group dedicated to problems in the field of optics with a lot of interesting industry-related applications (e.g., Signify, ASML and TNO). We will work together and support your research. The group belongs to CASA (Centre for Applied Analysis, Scientific Computing and Applications), that offers a collaborative research atmosphere with a lot of possibilities for exchange and social activities.
We are looking for talented enthusiastic PhD candidates who meet the following requirements:
A meaningful job in a dynamic and ambitious university, in an interdisciplinary setting and within an international network. You will work on a beautiful, green campus within walking distance of the central train station.
In addition, we offer you:
On our website you can discover even more information about our conditions of employment. Build on your career at TU/e!
We are a leading international university where scientific curiosity meets a hands-on mindset. We work in an open and collaborative way with high-tech industries to tackle complex societal challenges. Our responsible and respectful approach ensures impact — today and in the future. TU/e is home to over 13,000 students and more than 7,000 staff, forming a diverse and vibrant academic community.
Our university is located in Brainport Eindhoven — a world‑leading tech region with more than 7,000 high‑tech companies and strong R&D activity. Known for breakthroughs in AI, photonics, semiconductors and advanced manufacturing, Brainport is a place where technology serves people and society. Learn more about the Brainport region here.
As one of the largest and most dynamic academic communities in the Netherlands, the department Mathematics and Computer Science (M&CS) brings together more than 140 scientific staff, over 250 PhD and EngD candidates, and more than 3000 students. We collaborate closely with leading industrial partners in the Brainport Eindhoven region and with universities across the globe—creating a uniquely fertile environment for both fundamental breakthroughs and applied innovation.
Do you recognize yourself in this profile and would you like to know more? Please contact the hiring manager Dr. Lisa Kusch, [email protected].
Visit our website for more information about the application process.
Curious to hear more about what it’s like as a PhD candidate at TU/e? Please view the video.
Are you inspired and would like to know more about working at TU/e? Please visit our career page.
We invite you to submit a complete application by using the apply button. The application should include a:
Ensure that you submit all the requested application documents. We give priority to complete applications.
We look forward to receiving your application and will screen it as soon as possible. The vacancy will remain open until the position is filled.
We are an internationally top-ranking university in the Netherlands that combines scientific curiosity with a hands-on attitude.
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