Magnet.me - Het slimme netwerk waar studenten en professionals hun stage of baan vinden.
Het slimme netwerk waar studenten en professionals hun stage of baan vinden.
Je carrière begint op Magnet.me
Maak een profiel aan en ontvang slimme aanbevelingen op basis van je gelikete vacatures.
Our group's mission is to deliver industrialized and optimal solutions to achieve a spectrally-pure collection of EUV radiation, enabling robust and efficient performance of the next generation of EUV photolithography machines. Our main responsibility lies in understanding and modeling the fundamental physical effects of the EUV source. This includes physical effects related to the generation of EUV radiation via a laser-driven tin plasma, efficient collection and transmission of this radiation, thermal effects within the EUV source, and the design and qualification of EUV optics, among others. To enable our work, we employ a wide range of commercial and in-house physical modeling applications/codes and we have a strong competence in fundamental physics, mathematics, scientific computing, machine/deep learning and data analysis.
We are looking for two enthusiastic interns to join our team and help bring our models to the next level.
Assignment 1 is about: Merging Physics-Based Models with Deep Learning for Diagnostics
In this assignment, you will develop a hybrid model that integrates in-house, differentiable physics-based models, developed in Python, with deep learning algorithms to improve the diagnostic capabilities of the EUV optical system. The ultimate goal is to enhance the diagnostic capabilities of the EUV optical system, leading to a better fundamental understanding of physical processes and enabling preventative or corrective actions. Your tasks will involve:
Assignment 2 is about: Temporal Modeling of Mirror Degradation in EUV Photolithography Systems
In this assignment, you will develop temporal models to predict the degradation of mirrors within EUV photolithography systems over time. The ultimate goal is to provide fundamental insights that help improve the performance of the EUV optical system. Your tasks will involve:
Both of these internships are suitable for a Bachelor/ Master internship for a minimum duration of 5-6 months (apprenticeship) and 9 months (graduation/thesis internship), working 4-5 days per week (3 days onsite). The start date of this internship is as soon as possible or at the latest around September.
To be a fit for this assignment, you:
Other requirements you need to meet:
This position requires access to controlled technology, as defined in the United States Export Administration Regulations (15 C.F.R. § 730, et seq.). Qualified candidates must be legally authorized to access such controlled technology prior to beginning work. Business demands may require ASML to proceed with candidates who are immediately eligible to access controlled technology.
ASML is an Equal Opportunity Employer that values and respects the importance of a diverse and inclusive workforce. It is the policy of the company to recruit, hire, train and promote persons in all job titles without regard to race, color, religion, sex, age, national origin, veteran status, disability, sexual orientation, or gender identity. We recognize that diversity and inclusion is a driving force in the success of our company.
ASML is a leading supplier of lithography equipment, used by the world’s top chipmakers to print microchips that are increasingly powerful, fast and energy efficient. Working at ASML is inspiring, no matter what field you're in. That’s because we push the boundaries of technology: if it’s moving the world forward, chances are, we’re behind it. In fact, we’re probably a part of the electronic device you’re using right now.
We’re a global team of more than 32,000 people from 122 different nationalities and counting. Headquartered in Europe’s top tech hub, the Brainport Eindhoven region in the Netherlands, our operations are spread across Europe, Asia and the US.
We're moving technology forward
In fact, we’re probably a part of the electronic device you’re using right now. Our lithography technology is fundamental to mass producing semiconductor chips. With it, the world’s top chipmakers are creating microchips that are more powerful, faster and energy efficient.
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